Safety data sheet documentation for vanillin (CAS 121-33-5), compiled to REACH Annex II. Vanillin has no harmonised entry in CLP Annex VI; the sheet states its classification basis (aggregated ECHA C&L notifications). Two options: a working draft sent by e-mail immediately, or a signed card issued within 72 hours of complete input. The item supplied is a document — MolGod.org does not sell, supply or ship chemical substances.
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Section 9 — physicochemical properties: 10 of 22 established.
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Identity, structure, physical and chemical properties, analytical data and the literature — every value with the source it came from and the date that source was read. The full record is in the data sections further down this page.
Identity CAS · EC · IUPAC · synonyms · molecular formula · molecular weight
Structure 2D · 3D · SMILES · InChI · InChIKey
Physical melting point · boiling point · density · vapour pressure · solubility
Chemical reactivity · stability · incompatible materials
Analytical spectra and methods where available
References literature, with DOI where a DOI exists
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Document status revision date and the amendment in force when issued
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A digital PDF safety data sheet in the sixteen-section structure of REACH Annex II (Regulation 1907/2006).
Substance identification, hazard classification, physicochemical, toxicological and ecological information, and regulatory references.
Classification read against the harmonised entry in CLP Annex VI where one exists for the substance.
A version number, a compilation date, and the source behind each value that carries one.
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Everything your compliance officer will ask for, in one file.
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The specification, and the certificate of analysis where batch data exists.
sources.txt — every citation with the date it was read.
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Modèle 3D Vanillin, CAS 121-33-5, formule brute C8H8O3, masse molaire 152.15 g/mol
Données transcrites à partir de registres réglementaires et de la littérature spécialisée, avec indication de la source et de l'édition. Elles ne remplacent pas la fiche de données de sécurité du fournisseur. Les champs sans source enregistrée sont signalés comme tels.
NIST. Chemistry WebBook, SRD 69. National Institute of Standards and Technology. ↗
dotyczy: Point de fusion
PubChem. National Center for Biotechnology Information (NIH/NLM), chemical compound database. ↗
dotyczy: Point de fusion · Point d'ébullition · Masse volumique (ρ)
NLM. Hazardous Substances Data Bank (HSDB). National Library of Medicine. ↗
dotyczy: Point d'ébullition
Sangster, J. "Octanol-Water Partition Coefficients of Simple Organic Compounds." Journal of Physical and Chemical Reference Data 18, no. 3 (1989): 1111-1229. ↗
dotyczy: logP (octanol/eau)
Les valeurs physicochimiques proviennent de sources indépendantes et évaluées par des pairs, mentionnées ci-dessus.
PubChem. National Center for Biotechnology Information (NIH/NLM), chemical compound database. ↗
dotyczy: Formule brute · Masse moléculaire · Point de fusion · Point d'ébullition · Densité · LogP (lipophilie) · Nom IUPAC · SMILES · InChIKey
NIST. Chemistry WebBook, SRD 69. National Institute of Standards and Technology. ↗
dotyczy: Point de fusion
NLM. Hazardous Substances Data Bank (HSDB). National Library of Medicine. ↗
dotyczy: Point d'ébullition
Kamaly NA, Kamel AS, Sadik NA et al.. (2025). "Milnacipran and Vanillin Alleviate Fibromyalgia-Associated Depression in Reserpine-Induced Rat Model: Role of Wnt/β-Catenin Signaling.". Molecular neurob
Santos LDF, Lautru S, Pernodet JL. (2024). "Genetic Engineering Approaches for the Microbial Production of Vanillin.". Biomolecules. https://doi.org/10.3390/biom14111413
Stoff H. (2024). "Paulina S. Gennermann 2023: Eine Geschichte mit Geschmack. Die Natur synthetischer Aromastoffe im 20. Jahrhundert am Beispiel Vanillin und Lisa Haushofer 2022: Wonder Foods: The Scie
Liu Y, Sun L, Huo YX et al.. (2023). "Strategies for improving the production of bio-based vanillin.". Microbial cell factories. https://doi.org/10.1186/s12934-023-02144-9
Ma Q, Liu L, Zhao S et al.. (2022). "Biosynthesis of vanillin by different microorganisms: a review.". World journal of microbiology & biotechnology. https://doi.org/10.1007/s11274-022-03228-1
Rakoczy K, Szlasa W, Saczko J et al.. (2021). "Therapeutic role of vanillin receptors in cancer.". Advances in clinical and experimental medicine : official organ Wroclaw Medical University. https://d
MOLECULE
Bibliographie par CAS (en direct depuis 13+ bases de données)
Sources : db:pubmed (9)
db:pubmed
Zhang M, Subramaniyan S, Hakkarainen M. (2025). "Divanillin Cross-Linked Recyclable Cellulose Networks.". Macromolecular rapid communications. https://doi.org/10.1002/marc.202401094 →
db:pubmed
Kamaly NA, Kamel AS, Sadik NA et al.. (2025). "Milnacipran and Vanillin Alleviate Fibromyalgia-Associated Depression in Reserpine-Induced Rat Model: Role of Wnt/β-Catenin Signaling.". Molecular neurobiology. https://doi.org/10.1007/s12035-025-04723-w →
db:pubmed
Abdelghafour AM, Mahrous M, Zaher ME. (2025). "Vanillin alleviates oxidative stress-mediated neuronal pyroptosis induced in rats by isoproterenol via SIRT1/NOX4/ROS/TXNIP/NLRP3 signaling pathway.". Food & function. https://doi.org/10.1039/d4fo06458e →
db:pubmed
Santos LDF, Lautru S, Pernodet JL. (2024). "Genetic Engineering Approaches for the Microbial Production of Vanillin.". Biomolecules. https://doi.org/10.3390/biom14111413 →
db:pubmed
Stoff H. (2024). "Paulina S. Gennermann 2023: Eine Geschichte mit Geschmack. Die Natur synthetischer Aromastoffe im 20. Jahrhundert am Beispiel Vanillin und Lisa Haushofer 2022: Wonder Foods: The Science and Commerce of Nutrition.". NTM. https://doi.org/10.1007/s00048-024-00384-3 →
db:pubmed
Liu Y, Sun L, Huo YX et al.. (2023). "Strategies for improving the production of bio-based vanillin.". Microbial cell factories. https://doi.org/10.1186/s12934-023-02144-9 →
db:pubmed
Ma Q, Liu L, Zhao S et al.. (2022). "Biosynthesis of vanillin by different microorganisms: a review.". World journal of microbiology & biotechnology. https://doi.org/10.1007/s11274-022-03228-1 →
db:pubmed
Rakoczy K, Szlasa W, Saczko J et al.. (2021). "Therapeutic role of vanillin receptors in cancer.". Advances in clinical and experimental medicine : official organ Wroclaw Medical University. https://doi.org/10.17219/acem/139398 →
Cette substance est soumise à des exigences réglementaires : gestion des déchets dangereux (BDO — règle nationale, Pologne). Détails dans la section « Statut réglementaire (REACH/ECHA/CLP) » et sur la FDS. Information réglementaire — ne restreint pas l'achat dans la boutique.
🧮 Calculateur stœchiométrique
🧪 Données chimiques
Numéro CAS
121-33-5
Formule brute
C8H8O3
Masse molaire
152.15 g/mol
Nom IUPAC (EN)
4-hydroxy-3-methoxybenzaldehyde
SMILES
COC1=C(C=CC(=C1)C=O)O
InChIKey
MWOOGOJBHIARFG-UHFFFAOYSA-N
📡 Data sources
The data in this widget comes from the following verified scientific sources:
PubChem — National Center for Biotechnology Information (NCBI/NIH), USA
ChEMBL — European Bioinformatics Institute (EMBL-EBI), UK
NIST WebBook — National Institute of Standards and Technology, USA
Data is cached locally for speed — the widget also works offline.
⚗️ Physicochemical properties
Temp. topnienia
82
Density
1.056
Source: PubChem, NIST WebBook. Last updated: 2026-10-07
PubChem. National Center for Biotechnology Information (NIH/NLM), chemical compound database. ↗
dotyczy: PubChem CID · InChIKey · InChI · SMILES
ECHA. EC Inventory — EINECS, ELINCS, NLP and List Numbers assigned under REACH. Helsinki: European Chemicals Agency. ↗
dotyczy: EC Number
ChEMBL. European Bioinformatics Institute (EMBL-EBI), bioactivity database. ↗
dotyczy: ChEMBL
ChemSpider. Royal Society of Chemistry, chemical structure database. ↗
dotyczy: ChemSpider
Further reading
Publications topically related to this CAS. They are not the source of any value given on this card.
Bibliographie (étendue) (5)
★★☆☆☆CROSSREF🔓 LIBRE❓ non vérifiéAnonymous. "Vanillin.". https://doi.org/10.31003/fcc_f101484_02_01.lien[consulté: 2026-10-07]CC0 (metadata)
★★☆☆☆CROSSREF🔓 LIBRE❓ non vérifiéAnonymous. "Ethyl Vanillin.". https://doi.org/10.31003/fcc_f101260_02_01.lien[consulté: 2026-10-07]CC0 (metadata)
★★☆☆☆CROSSREF🔓 LIBRE❓ non vérifiéAnonymous. "Vanillin.". https://doi.org/10.31003/uspnf_m87890_02_01.lien[consulté: 2026-10-07]CC0 (metadata)
★★☆☆☆CROSSREF🔓 LIBRE❓ non vérifiéAnonymous. "Ethyl Vanillin.". https://doi.org/10.31003/uspnf_m31950_02_01.lien[consulté: 2026-10-07]CC0 (metadata)
★☆☆☆☆OPENLIBRARY🔓 LIBREWilliam Shober Seese. 1965. "The synthesis of substituted o̲-vanillins."lien[consulté: 2026-10-07]CC0 (metadata)
📡 Spectroscopie — CAS 121-33-5
NMR spectroscopy — source records
Earlier NMR results on this page remain available: Live Spectra (NMRShiftDB card).
Structure identity: MWOOGOJBHIARFG-UHFFFAOYSA-N
For each record: MolGod’s status line, then the source record (as retrieved by MolGod), then MolGod’s own checks.
Experimental NMR
¹H NMR
¹H NMR — Experimental (measured); conditions reported by the source: solvent, temperature, spectrometer frequency — nmrshiftdb2:spectrum:80128625
δ (ppm)
Assignment (atoms)
Multiplicity
Assignment quality
9.341
H4
not reported by the source
exact
7.294
H2
not reported by the source
exact
7.178
H1
not reported by the source
exact
6.685
H3
not reported by the source
exact
3.706
H5 H6 H7
not reported by the source
group
Source
nmrshiftdb2
Spectrum ID
80128625
Solvent
Deuteriumoxide (D2O)
Temperature (K)
298
Frequency (MHz)
500
Publication
not reported by the source
Method
Source measurement type: not declared
Retrieved
2026-10-03T05:23:30Z
MolGod verification
experimental candidate by rule NMR-MEASCALC-1
Assignments
exact 4, group 1
¹H NMR — Experimental (measured); conditions reported by the source: solvent, temperature, spectrometer frequency — nmrshiftdb2:spectrum:80129095
δ (ppm)
Assignment (atoms)
Multiplicity
Assignment quality
9.772
H4
not reported by the source
exact
7.42
H2
not reported by the source
exact
7.388
H1
not reported by the source
exact
6.961
H3
not reported by the source
exact
3.841
H5 H6 H7
not reported by the source
group
Source
nmrshiftdb2
Spectrum ID
80129095
Solvent
DMSO
Temperature (K)
298
Frequency (MHz)
500
Publication
not reported by the source
Method
Source measurement type: not declared
Retrieved
2026-10-03T05:23:30Z
MolGod verification
experimental candidate by rule NMR-MEASCALC-1
Assignments
exact 4, group 1
¹³C NMR
¹³C NMR — Experimental (measured); conditions reported by the source: solvent, temperature, spectrometer frequency — nmrshiftdb2:spectrum:20199442
δ (ppm)
Assignment (atoms)
Multiplicity
Assignment quality
57.1
C8
Q
exact
112.4
C3
D
exact
117.0
C6
D
exact
127.4
C5
D
exact
130.4
C2
S
exact
149.7
C1
S
exact
154.6
C4
S
exact
192.2
C7
D
exact
Source
nmrshiftdb2
Spectrum ID
20199442
Solvent
Dimethylsulphoxide-D6 (DMSO-D6, C2D6SO)
Temperature (K)
298
Frequency (MHz)
23
Publication
not reported by the source
Method
Source measurement type: not declared
Retrieved
2026-10-03T05:23:30Z
MolGod verification
experimental candidate by rule NMR-MEASCALC-1
Assignments
exact 8
¹³C NMR — Experimental (measured); conditions reported by the source: solvent, temperature, spectrometer frequency — nmrshiftdb2:spectrum:80128626
δ (ppm)
Assignment (atoms)
Multiplicity
Assignment quality
193.096
C7
D
exact
159.51
C4
S
exact
149.127
C1
S
exact
129.017
C5
D
exact
124.84
C2
S
exact
116.207
C6
D
exact
109.803
C3
D
exact
54.967
C8
Q
exact
Source
nmrshiftdb2
Spectrum ID
80128626
Solvent
Deuteriumoxide (D2O)
Temperature (K)
298
Frequency (MHz)
500
Publication
not reported by the source
Method
Source measurement type: not declared
Retrieved
2026-10-03T05:23:30Z
MolGod verification
experimental candidate by rule NMR-MEASCALC-1
Assignments
exact 8
¹³C NMR — Experimental (measured); conditions reported by the source: solvent, temperature, spectrometer frequency — nmrshiftdb2:spectrum:80129096
δ (ppm)
Assignment (atoms)
Multiplicity
Assignment quality
191.009
C7
D
exact
153.029
C4
S
exact
148.155
C1
S
exact
128.701
C2
S
exact
126.092
C5
D
exact
115.383
C6
D
exact
110.653
C3
D
exact
55.574
C8
Q
exact
Source
nmrshiftdb2
Spectrum ID
80129096
Solvent
DMSO
Temperature (K)
298
Frequency (MHz)
500
Publication
not reported by the source
Method
Source measurement type: not declared
Retrieved
2026-10-03T05:23:30Z
MolGod verification
experimental candidate by rule NMR-MEASCALC-1
Assignments
exact 8
NMR deposited as experimental — measurement details incomplete
The source lists these spectra as experimental but does not report all measurement details; each spectrum states what is missing. Chemical shifts below come from the source record and are not reconstructed.
¹³C NMR
¹³C NMR — Deposited as experimental; the source reports no measurement details (solvent, temperature, spectrometer frequency not reported) — nmrshiftdb2:spectrum:10042837
δ (ppm)
Assignment (atoms)
Multiplicity
Assignment quality
56.45
C8
Q
exact
110.15
C3
D
exact
115.55
C6
D
exact
128.2
C5
D
exact
130.55
C2
S
exact
148.5
C1
S
exact
153.14
C4
S
exact
192.5
C7
D
exact
Source
nmrshiftdb2
Spectrum ID
10042837
Solvent
not reported by the source
Temperature (K)
not reported by the source
Frequency (MHz)
not reported by the source
Publication
not reported by the source
Method
Source measurement type: not declared
Retrieved
2026-10-03T05:23:30Z
MolGod verification
experimental candidate by rule NMR-MEASCALC-1
Assignments
exact 8
¹³C NMR — Deposited as experimental; the source reports no measurement details (solvent, temperature, spectrometer frequency not reported) — nmrshiftdb2:spectrum:20088909
δ (ppm)
Assignment (atoms)
Multiplicity
Assignment quality
56.1
C8
Q
exact
108.9
C3
D
exact
114.5
C6
D
exact
127.6
C5
D
exact
129.7
C2
S
exact
147.3
C1
S
exact
151.8
C4
S
exact
191.0
C7
D
exact
Source
nmrshiftdb2
Spectrum ID
20088909
Solvent
not reported by the source
Temperature (K)
not reported by the source
Frequency (MHz)
not reported by the source
Publication
not reported by the source
Method
Source measurement type: not declared
Retrieved
2026-10-03T05:23:30Z
MolGod verification
experimental candidate by rule NMR-MEASCALC-1
Assignments
exact 8
Calculated / predicted NMR — not experimental measurements
Values below are calculated, not measured.
¹³C NMR
¹³C NMR — Predicted by ACD/Labs C+H NMR Predictors and DB, 2020.1.0 (calculated, not measured) — nmrshiftdb2:spectrum:60021186
δ (ppm)
Assignment (atoms)
Multiplicity
Assignment quality
56.04
C8
Q
exact
148.08
C1
S
exact
109.97
C3
D
exact
129.88
C2
S
exact
191.2
C7
D
exact
127.09
C5
D
exact
115.27
C6
D
exact
152.7
C4
S
exact
Source
nmrshiftdb2
Spectrum ID
60021186
Solvent
not reported by the source
Temperature (K)
not reported by the source
Frequency (MHz)
not reported by the source
Publication
not reported by the source
Method
Source method: ACD/Labs C+H NMR Predictors and DB, 2020.1.0 (calculated)
Retrieved
2026-10-03T05:23:30Z
MolGod verification
calculated (prediction) by rule NMR-MEASCALC-1
Assignments
exact 8
¹³C NMR — Predicted by HOSE code using nmrshiftdb2 data (calculated, not measured) — nmrshiftdb2:spectrum:70148281
δ (ppm)
Assignment (atoms)
Multiplicity
Assignment quality
57.1
C8
Q
exact
149.7
C1
S
exact
112.4
C3
D
exact
130.4
C2
S
exact
192.2
C7
D
exact
127.4
C5
D
exact
117.0
C6
D
exact
154.6
C4
S
exact
Source
nmrshiftdb2
Spectrum ID
70148281
Solvent
not reported by the source
Temperature (K)
not reported by the source
Frequency (MHz)
not reported by the source
Publication
not reported by the source
Method
Source method: HOSE code using nmrshiftdb2 data (calculated)
Retrieved
2026-10-03T05:23:30Z
MolGod verification
calculated (prediction) by rule NMR-MEASCALC-1
Assignments
exact 8
Values withheld at gate DATA_QUALITY — measurement type could not be classified.
Source
nmrshiftdb2
Spectrum ID
60005858
Solvent
Deuteriumoxide (D2O)
Temperature (K)
298
Frequency (MHz)
31.25
Publication
not reported by the source
Method
Source measurement type: not declared
Retrieved
2026-10-03T05:23:30Z
MolGod verification
unknown
Assignments
exact 4, group 1
Values withheld at gate DATA_QUALITY — measurement type could not be classified.
Source
nmrshiftdb2
Spectrum ID
60005856
Solvent
Deuteriumoxide (D2O)
Temperature (K)
298
Frequency (MHz)
31.25
Publication
not reported by the source
Method
Source measurement type: not declared
Retrieved
2026-10-03T05:23:30Z
MolGod verification
unknown
Assignments
exact 8
Values withheld at gate DATA_QUALITY — measurement type could not be classified.
Source
nmrshiftdb2
Spectrum ID
60006781
Solvent
Chloroform-D1 (CDCl3)
Temperature (K)
294
Frequency (MHz)
150.0
Publication
not reported by the source
Method
Source measurement type: not declared
Retrieved
2026-10-03T05:23:30Z
MolGod verification
unknown
Assignments
exact 8
Symmetry-equivalent atom groups (MolGod, from the three-dimensional structure)
📊Bases de données de spectres spectroscopiques — données inline9 sources
Les spectres sont récupérés à la demande depuis 9 sources. Chaque spectre est enregistré dans notre base — la prochaine ouverture = zéro requête vers l'API externe. Téléchargez JCAMP-DX / CSV / PNG pour chaque spectre sans avoir à chercher.
Type of data: Type of data not reported by the source (may be measured or calculated) Basis: these values match NMRShiftDB record nmrshiftdb2:60005858; type as classified by MolGod from that record.
⏳ Chargement…
▶ Cliquez pour charger le spectre
🔗 Source
About the downloads (Type of data: Type of data not reported by the source (may be measured or calculated)) JCAMP: the NMRShiftDB file as received (JCAMP-DX 5.01 text). It is a peak list: chemical shift in ppm. MolGod adds header lines stating the type of data; the values are unchanged. CSV: the same peak list in two columns. The second column repeats the shift value; it is not a signal intensity. Lines starting with # state the type of data. PNG: a picture of the plot above, with the type of data written on it. Use: where signals are expected or were reported (chemical shift positions). Not included or guaranteed: intensities, multiplicities, coupling constants, line shapes, and solvent or temperature unless stated. A predicted list is not a measurement and cannot serve as a reference spectrum for identity or purity testing. Downloads become active after Show.
Les données sont récupérées une seule fois (analyseur JCAMP-DX) et enregistrées dans la base locale de l'extension. Aucun téléchargement en double, aucune requête NIST lors des ouvertures suivantes. Licences respectées (seuls un lien profond et notre propre visualisation sont publiés).
Données récupérées en direct depuis plusieurs sources (priority-chain). JCAMP-DX / CSV / PNG disponibles au téléchargement sous chaque spectre.
IR — infrarouge à transformée de Fourier
Chargement de IR — infrarouge à transformée de Fourier…
MS — spectrométrie de masse (EI 70eV)
Chargement de MS — spectrométrie de masse (EI 70eV)…
🔎 Recherche par spectre (JCAMP-DX)
Téléversez un fichier JCAMP-DX (.jdx, .dx, .jcm) — le système calculera la similarité cosinus par rapport à tous les spectres de la base de données et affichera les TOP 10 correspondances.
📚 Bibliographie (Chicago)
McLafferty, Fred W., ed. 2018. Wiley Registry of Mass Spectral Data. 11th ed. Hoboken, NJ: Wiley. Une bibliothèque MS de référence (~775k spectres).
Stein, Stephen E., and Donald R. Scott. 1994. "Optimization and Testing of Mass Spectral Library Search Algorithms for Compound Identification." Journal of the American Society for Mass Spectrometry 5 (9): 859–866. L'algorithme cosine + dot-product de NIST MS Search.
McDonald, Robert S., and Paul A. Wilks Jr. 1988. "JCAMP-DX: A Standard Form for Exchange of Infrared Spectra in Computer Readable Form." Applied Spectroscopy 42 (1): 151–162. La spécification JCAMP-DX (étendue à 5.01 pour NMR/MS).
McLafferty, Fred W., and František Tureček. 1993. "Interpretation of Mass Spectra." 4th ed. Mill Valley, CA: University Science Books. Appariement par similarité cosinus et fragmentation MS — le fondement de l'algorithme de recherche.
Sumner, Lloyd W., Alexander Amberg, Dave Barrett, Michael H. Beale, Richard Beger, Clare A. Daykin, Teresa W.-M. Fan, et al. 2007. "Proposed Minimum Reporting Standards for Chemical Analysis." Metabolomics 3 (3): 211–221. MSI Level 1-4 — normes de niveau de confiance pour l'appariement spectral.
Stein, Stephen E. 1999. "An Integrated Method for Spectrum Extraction and Compound Identification from Gas Chromatography/Mass Spectrometry Data." Journal of the American Society for Mass Spectrometry 10 (8): 770–781. L'algorithme AMDIS — déconvolution + library match (NIST).
Lindon, John C., George E. Tranter, and David W. Koppenaal, eds. 2017. "Encyclopedia of Spectroscopy and Spectrometry." 3rd ed. Amsterdam: Academic Press. Entrées encyclopédiques sur la recherche en bibliothèque spectrale.
Smith, Brian C. 2011. "Fundamentals of Fourier Transform Infrared Spectroscopy." 2nd ed. Boca Raton, FL: CRC Press. FT-IR et le format JCAMP-DX pour les spectres de transmission.
Larkin, Peter. 2017. "Infrared and Raman Spectroscopy: Principles and Spectral Interpretation." 2nd ed. Amsterdam: Elsevier. Principes de l'appariement en bibliothèque IR/Raman et du prétraitement des pics.
Propriétés structurelles
Chargement des données structurelles...
❓ Questions fréquentes (3)
What is 121-33-5?
121-33-5 (CAS 121-33-5) is a chemical compound. The chemical data comes from PubChem (National Institutes of Health, USA).
Utile ?
What is the CAS number of 121-33-5?
The CAS number for 121-33-5 is 121-33-5. A CAS Registry Number is the standard identifier for a chemical substance in scientific literature and in trade.
Utile ?
How should 121-33-5 be stored?
121-33-5 should be stored as its safety data sheet directs \— typically in a dry, cool, well-ventilated place, away from heat and from materials it is incompatible with.
Utile ?
➕ Proposer une question
Télécharger les fichiers de structure
Fichiers de structure moléculaire issus de la base PubChem (NIH). Compatibles avec les logiciels : Avogadro, PyMOL, Jmol, ChemDraw.
Cohen ER, Cvitaš T, Frey JG, Holmström B, Kuchitsu K, Marquardt R, Mills I, Pavese F, Quack M, Stohner J, Strauss HL, Takami M, Thor AJ (2007)
g/L ↔ molarity
c (mol/L) = (g/L) / MW
±0.1% (depends on MW precision)
Cohen ER, Cvitaš T, Frey JG, Holmström B, Kuchitsu K, Marquardt R, Mills I, Pavese F, Quack M, Stohner J, Strauss HL, Takami M, Thor AJ (2007)
mmol/L ↔ molarity
c (mol/L) = mmol/L × 10⁻³
Exact
Cohen ER, Cvitaš T, Frey JG, Holmström B, Kuchitsu K, Marquardt R, Mills I, Pavese F, Quack M, Stohner J, Strauss HL, Takami M, Thor AJ (2007)
Celsius ↔ Kelvin
T(K) = t(°C) + 273.15
±0.01 K (ITS-90 scale)
BIPM (Bureau International des Poids et Mesures) (2019)
Celsius ↔ Fahrenheit
T(°F) = T(°C) × 9/5 + 32
±0.1 °F
Thompson A, Taylor BN (2008)
density-corrected % ↔ molarity
c (mol/L) = (%w/w × ρ × 10) / MW, ρ in g/mL
±0.1% when ρ known to 3 decimals
Cohen ER, Cvitaš T, Frey JG, Holmström B, Kuchitsu K, Marquardt R, Mills I, Pavese F, Quack M, Stohner J, Strauss HL, Takami M, Thor AJ (2007)
📚 Bibliographie (8 sources faisant autorité)
Thompson A, Taylor BN (2008). Guide for the Use of the International System of Units (SI). NIST Special Publication 811 · DOI: 10.6028/NIST.SP.811-2008 → Primary SI standard for US scientific usage
Cohen ER, Cvitaš T, Frey JG, Holmström B, Kuchitsu K, Marquardt R, Mills I, Pavese F, Quack M, Stohner J, Strauss HL, Takami M, Thor AJ (2007). Quantities, Units and Symbols in Physical Chemistry — The IUPAC Green Book. RSC Publishing, 3rd ed. · DOI: 10.1039/9781847557889 · ISBN: 978-0-85404-433-7 → Canonical IUPAC guide for chemistry quantities/units
BIPM (Bureau International des Poids et Mesures) (2019). The International System of Units (SI), 9th edition. BIPM · ↗ → International SI definitions (incl. redefined kilogram 2019)
ISO/IEC (2022). Quantities and units — Part 1: General. International Organization for Standardization — ISO 80000-1:2022 · ↗ → General rules for physical quantities and units
ISO/IEC (2019). Quantities and units — Part 9: Physical chemistry and molecular physics. International Organization for Standardization — ISO 80000-9:2019 · ↗ → Concentration / molality / amount-of-substance conventions
Tiesinga E, Mohr PJ, Newell DB, Taylor BN (2021). CODATA recommended values of the fundamental physical constants: 2018. Rev. Mod. Phys. 93(2):025010 · DOI: 10.1103/RevModPhys.93.025010 → Avogadro, gas constant, molar volume (2019 SI revision)
IUPAC (2019). Compendium of Chemical Terminology — the IUPAC Gold Book (online). IUPAC · DOI: 10.1351/goldbook → Definitions of mass fraction, molality, normality, ppm, activity
Mills IM, Cvitaš T, Homann K, Kallay N, Kuchitsu K (1988). Quantities, Units and Symbols in Physical Chemistry. Blackwell Scientific Publications, 1st ed. · ISBN: 0-632-01773-5 → Historical predecessor of IUPAC Green Book
Avis sur les limitations des données. Les informations de sécurité figurant sur cette page sont fournies à titre indicatif et ne remplacent pas une fiche de données de sécurité (SDS) complète. Avant d'utiliser le produit, consultez la fiche de données de sécurité actuelle du fabricant ainsi que les directives GHS/CLP. La classification CLP s'applique à la substance pure en vrac, et non aux préparations commerciales.
❗GHS07Irritant / nocif🐟GHS09Danger pour l'environnement
🚨 Mentions de danger (H)
H319 — Provoque une sévère irritation des yeux.
H302 — Nocif en cas d'ingestion.
H411 — Toxique pour les organismes aquatiques, entraîne des effets néfastes à long terme.
H320 — Provoque une irritation des yeux.
H402 — Harmful to aquatic life
H412 — Nocif pour les organismes aquatiques, entraîne des effets néfastes à long terme.
🛡 Conseils de prudence (P)
P261 — Éviter de respirer les poussières/fumées/gaz/brouillards/vapeurs/aérosols.
P264 — Se laver … soigneusement après manipulation.
⚠ Classification basée sur un consensus de sources (PubChem / déclarations des fournisseurs) — non vérifiée par rapport à la classification harmonisée de l'annexe VI (CLP). L'étendue des dangers peut être plus large que la classification officielle ; avant utilisation, vérifier avec la fiche de données de sécurité actuelle du fournisseur.
Traductions : Règlement CLP (CE) 1272/2008, Annexe III et IV. Données : PubChem/NLM.
☢️ Données toxicologiques (IARC + EPA CTX)
🧬 Classification de cancérogénicité IARC
Classification IARC :
Aucune entrée IARC individuelle pour ce CAS
Aucune monographie IARC distincte dans les listes vérifiées — ceci N'EST PAS une confirmation de l'absence de cancérogénicité. Vérifiez la classification CLP/GHS (section CMR / GHS).
🌍 Écotoxicologie et devenir environnemental (FDS sect. 8/12)
CL₅₀ (poissons):
57 mg/L (Pimephales promelas, 96 h)
Source : U.S. EPA ECOTOX Knowledgebase — https://cfpub.epa.gov/ecotox/
📚 Sources :
IARC Monographs (WHO) Dernière vérification : 2026-10-07
Zhang M, Subramaniyan S, Hakkarainen M. (2025). "Divanillin Cross-Linked Recyclable Cellulose Networks.". Macromolecular rapid communications. https://doi.org/10.1002/marc.202401094 [DOI]
Kamaly NA, Kamel AS, Sadik NA et al.. (2025). "Milnacipran and Vanillin Alleviate Fibromyalgia-Associated Depression in Reserpine-Induced Rat Model: Role of Wnt/β-Catenin Signaling.". Molecular neurobiology. https://doi.org/10.1007/s12035-025-04723-w [DOI]
Abdelghafour AM, Mahrous M, Zaher ME. (2025). "Vanillin alleviates oxidative stress-mediated neuronal pyroptosis induced in rats by isoproterenol via SIRT1/NOX4/ROS/TXNIP/NLRP3 signaling pathway.". Food & function. https://doi.org/10.1039/d4fo06458e [DOI]
Santos LDF, Lautru S, Pernodet JL. (2024). "Genetic Engineering Approaches for the Microbial Production of Vanillin.". Biomolecules. https://doi.org/10.3390/biom14111413 [DOI]
Stoff H. (2024). "Paulina S. Gennermann 2023: Eine Geschichte mit Geschmack. Die Natur synthetischer Aromastoffe im 20. Jahrhundert am Beispiel Vanillin und Lisa Haushofer 2022: Wonder Foods: The Science and Commerce of Nutrition.". NTM. https://doi.org/10.1007/s00048-024-00384-3 [DOI]
Liu Y, Sun L, Huo YX et al.. (2023). "Strategies for improving the production of bio-based vanillin.". Microbial cell factories. https://doi.org/10.1186/s12934-023-02144-9 [DOI]
Ma Q, Liu L, Zhao S et al.. (2022). "Biosynthesis of vanillin by different microorganisms: a review.". World journal of microbiology & biotechnology. https://doi.org/10.1007/s11274-022-03228-1 [DOI]
Rakoczy K, Szlasa W, Saczko J et al.. (2021). "Therapeutic role of vanillin receptors in cancer.". Advances in clinical and experimental medicine : official organ Wroclaw Medical University. https://doi.org/10.17219/acem/139398 [DOI]
International Agency for Research on Cancer (IARC). 2024. "IARC Monographs on the Identification of Carcinogenic Hazards to Humans." Lyon: IARC. 🔗
U.S. EPA. 2024. "ECOTOX Knowledgebase." Washington, DC: U.S. Environmental Protection Agency. 🔗
ECHA. 2024. "Chemical Safety Assessment." European Chemicals Agency. 🔗
U.S. National Toxicology Program. 2024. Report on Carcinogens. 15th ed. Research Triangle Park, NC: National Institute of Environmental Health Sciences. 🔗
GESTIS. 2024. "GESTIS Substance Database." Institute for Occupational Safety and Health of the German Social Accident Insurance (DGUV). 🔗
U.S. EPA. 2024. "CompTox Chemicals Dashboard." Washington, DC: U.S. Environmental Protection Agency. 🔗
🚨 Procédure d'urgence — déversement de produits chimiquesIrritant
CAS 121-33-5GHS:H319H302H411H320H402H412💨 Ventilation
🥽 EPI — Équipement de protection individuelle
Lunettes de protection:Oui
Combinaison:blouse de laboratoire
📦 Petit déversement (<1L) — absorbant : absorbant inerte (vermiculite) / ramassage à sec
⚠️ Procédure GÉNÉRIQUE dérivée de la classification GHS (aucune donnée curée pour ce CAS). Utilisez toujours la fiche de données de sécurité (FDS) actuelle du fournisseur.
1. Ventiler ; éviter le contact avec la peau/les yeux ainsi que l'inhalation de poussière.
2. Ramasser mécaniquement dans un récipient ; rincer les résidus à l'eau.
3. Signaler la surface glissante/contaminée.
4. Lavez la zone à l'eau ; traitez les résidus et l'absorbant comme un déchet dangereux.
Propriétés supplémentaires issues du GHS :
• dangereux pour l'environnement — empêcher la pénétration dans les égouts, le sol, les eaux
🛢️ Grand déversement (>1L) ⚠️ Matière dangereuse
1. Restreindre la zone ; EPI : gants, lunettes-masque, en cas de poussière demi-masque.
2. Endiguer et ramasser mécaniquement ; remettre à l'élimination selon la classification.
3. Collectez mécaniquement dans un conteneur UN étiqueté ; remettez à une entreprise agréée (BDO — règle nationale, Pologne).
4. Signaler l'incident conformément à la procédure HSE ; en cas de rejet dans l'environnement, notifier le WIOŚ (règle nationale — Pologne).
🩹 Premiers secours
🧴 Peau
1. Retirez les vêtements contaminés.
2. Rincez la peau abondamment à l'eau pendant ≥15 min.
👁️ Yeux
1. Rincez à l'eau ≥15 min, paupières écartées ; retirez les lentilles de contact.
2. Ophtalmologiste en cas d'irritation persistante.
🫁 Inhalation
1. Transportez à l'air frais, position confortable.
2. En cas de difficulté respiratoire — oxygène / médecin.
🍽️ Ingestion
1. Rincer la bouche à l'eau ; NE PAS faire vomir.
2. Centre antipoison (Pologne) : +48 42 631 47 24.
🌍 Environnement :
Eau : Élevée; Sol : Moyenne; ❌ Ne pas rejeter dans les égouts; Code déchet : 16 05 06*
European Chemicals Agency (ECHA). 2020. Guidance on the Compilation of Safety Data Sheets — Section 6: Accidental Release Measures. ECHA.
[lien ↗]
European Parliament and Council. 2008. Regulation (EC) No 1272/2008 (CLP) — Hazard classes and H-statements. Official Journal of the European Union L 353.
[lien ↗]
National Institute for Occupational Safety and Health (NIOSH). 2023. Pocket Guide to Chemical Hazards — NIOSH Pocket Guide to Chemical Hazards. CDC.
[lien ↗]
U.S. Occupational Safety and Health Administration. 2024. 29 CFR 1910.120 — Hazardous Waste Operations and Emergency Response (HAZWOPER). U.S. Code of Federal Regulations.
[lien ↗]
National Fire Protection Association. 2018. NFPA 472: Standard for Competence of Responders to Hazardous Materials/Weapons of Mass Destruction Incidents. NFPA.
[lien ↗]
European Parliament and Council. 2012. Directive 2012/18/EU on the Control of Major-Accident Hazards Involving Dangerous Substances (Seveso III). Official Journal of the European Union L 197: 1–37.
[lien ↗]
U.S. National Institute for Occupational Safety and Health. 2024. NIOSH Pocket Guide to Chemical Hazards. Centers for Disease Control and Prevention.
[lien ↗]
European Chemicals Agency. 2020. Guidance on the Compilation of Safety Data Sheets (SDS), Version 3.1. ECHA.
[lien ↗]
Sources : Classification GHS/CLP (PubChem/FDS) — solution de repli générique · ECHA Guidance on SDS (sect. 6) · NIOSH Pocket Guide.
Données indicatives — en cas d'urgence, suivez toujours les instructions du fournisseur + la réglementation locale en matière de santé et sécurité au travail (SST).
⚠️ Guide visuel des EPI (équipements de protection individuelle)Irritant
🧤 Gants
Nitrile standard >0.1 mm EN 374-1 typ C
Protection standard contre l'irritation cutanée
👁️ Lunettes de sécurité / Lunettes-masque
EN 166 D
Protection contre les particules solides et les gouttelettes ; catégorie de base
🥼 Blouse / combinaison
Blouse de laboratoire en coton standard EN 13688
Manche longue boutonnée standard
💨 Ventilation
4 ACH(air changes/hour) Ventilation générale du laboratoire
4 ACH minimum pour les opérations ouvertes ; hotte aspirante pour les poussières concentrées
📚 Références scientifiques (Chicago Author-Date)
European Committee for Standardization (CEN). 2016. EN 374-1:2016 — Protective gloves against dangerous chemicals and micro-organisms — Part 1: Terminology and performance requirements for chemical risks. CEN, Brussels. EN 374-1:2016. [link ↗] — Classification des gants résistants aux produits chimiques type A/B/C ; tests de perméation JKLPT
European Committee for Standardization (CEN). 2001. EN 166:2001 — Personal eye-protection — Specifications. CEN, Brussels. EN 166:2001. [link ↗] — Marquages : B = énergie d'impact moyenne, T = températures extrêmes, 9 = métaux fondus et solides
European Committee for Standardization (CEN). 2009. EN 14605:2005+A1:2009 — Protective clothing against liquid chemicals — Performance requirements for clothing with liquid-tight (Type 3) or spray-tight (Type 4) connections. CEN, Brussels. EN 14605:2009. [link ↗] — Type 3 (jet-tight) et Type 4 (spray-tight) — protection contre les produits chimiques liquides
National Institute for Occupational Safety and Health (NIOSH). 2017. Recommendations for Chemical Protective Clothing: A Companion to the NIOSH Pocket Guide. U.S. Department of Health & Human Services / CDC. [link ↗] — Guide pratique de sélection des CPC par substance et scénario d'exposition
Occupational Safety and Health Administration (OSHA). 2011. Personal Protective Equipment — General requirements. U.S. Department of Labor — 29 CFR 1910.132. 29 CFR 1910.132. [link ↗] — L'employeur doit fournir des EPI + une formation + une évaluation des risques documentée par écrit
📋 Conformité réglementaire (liste de contrôle de conformité)Irritant1 requis7 éléments
ℹ️ Liste de contrôle des obligations réglementaires pour CAS 121-33-5.
Statut basé sur : ADR 2025 (Tableau A), REACH Annexe XVII, CLP Annexe VI (classification harmonisée), hazard class de m14-spill DB, SVHC, GIS et VLEP PL. Principe : absence de données = absence d'affirmation (NOUS ne déclarons pas « absence de restrictions » sans fondement).
✅FDS (fiche de données de sécurité) disponiblesatisfait
Comment assurer la conformité : Exigence : FDS à jour conforme au Règl. 1907/2006 (REACH) Annexe II, format à 16 sections.
Base légale : Règlement (CE) n° 1907/2006 (REACH) art. 31 + annexe II
Comment assurer la conformité : L'étiquette doit comporter : pictogrammes GHS, mention d'avertissement (Danger/Attention), mentions de danger (H) et conseils de prudence (P), coordonnées du fabricant. Obligatoire depuis 2010 (substances) et 2015 (mélanges).
Base légale : Règlement (CE) n° 1272/2008 (CLP) art. 17-33
Comment assurer la conformité : Aucune donnée ADR dans le jeu de données MOL-GOD pour ce numéro CAS. Ne supposez PAS l'absence de restrictions — avant l'expédition, vérifiez la classification de transport dans l'ADR 2025 (Tableau A) ainsi que dans la section 14 de la fiche de données de sécurité (SDS).
Base légale : Accord européen ADR 2025 + loi polonaise du 19 août 2011 sur le transport des marchandises dangereuses Règles nationales — Pologne
Comment assurer la conformité : Les importateurs/fabricants ≥1 tonne/an doivent enregistrer la substance auprès de l'ECHA (dossier technique + Chemical Safety Report si ≥10 t). Consultez ECHA Annex VI / registered substances list.
Base légale : Règlement (CE) n° 1907/2006 (REACH) art. 5-22
Comment assurer la conformité : Statut SVHC non vérifié dans le jeu de données disponible — consulter la liste des substances candidates de l'ECHA à jour ; ne pas présumer l'absence d'entrée.
Base légale : REACH art. 7(2) + 33 — notification SVHC + communication
❓Annexe XVII REACH (restrictions d'utilisation/commercialisation)à vérifier
Comment assurer la conformité : Aucune entrée dans le jeu de données de classification harmonisée (CLP annexe VI) pour ce numéro CAS — statut des entrées 28–30 (interdiction CMR) NON VÉRIFIÉ ; ne pas supposer l'absence de restriction. Le jeu de données des restrictions de l'annexe XVII est également incomplet — consulter l'annexe XVII consolidée et la classification CMR harmonisée sur le site de l'ECHA.
Base légale : Règlement (CE) n° 1907/2006 (REACH) annexe XVII — restrictions à la fabrication, à la mise sur le marché et à l'utilisation
European Parliament and Council. 2008. Regulation (EC) No 1272/2008 on classification, labelling and packaging of substances and mixtures (CLP). Official Journal of the European Union L 353/1. CLP Regulation 1272/2008. [link ↗] — Classification, étiquetage et emballage des substances + mélanges (mise en œuvre du GHS dans l'UE)
European Parliament and Council. 2006. Regulation (EC) No 1907/2006 concerning the Registration, Evaluation, Authorisation and Restriction of Chemicals (REACH). Official Journal of the European Union L 396/1. REACH Regulation 1907/2006. [link ↗] — REACH — enregistrement, évaluation et autorisation des produits chimiques ; SVHC ; SDS Annexe II
Ministerstwo Rodziny i Polityki Społecznej Rzeczypospolitej Polskiej. 2024. Rozporządzenie Ministra Rodziny i Polityki Społecznej z dnia 4 września 2024 r. w sprawie najwyższych dopuszczalnych stężeń i natężeń czynników szkodliwych dla zdrowia w środowisku pracy. Dziennik Ustaw RP 2024 poz. 1017. Règles nationales — Pologne[link ↗] — VLEP et VLEPc pour ~600 substances chimiques — limites polonaises actuelles d'exposition professionnelle
United Nations Economic Commission for Europe (UNECE). 2025. European Agreement concerning the International Carriage of Dangerous Goods by Road (ADR), 2025 Edition. United Nations, Geneva. ADR 2025. [link ↗] — Accord international relatif au transport routier des marchandises dangereuses — numéros ONU, classes, emballages
📚 Références scientifiques consolidées — Chicago auteur-date 10 sources
Références collectées dans tous les onglets du Safety Hub. CAS : 121-33-5 ·
PubChem ↗
Parlament Europejski i Rada UE. 2008. "Regulation (EC) nr 1272/2008 w sprawie klasyfikacji, oznakowania i pakowania substancji (CLP)." Dz.Urz. UE L 353. [↗]
GHS, Réglementations
United Nations Economic Commission for Europe (UNECE). 2021. "Globally Harmonized System of Classification and Labelling of Chemicals (GHS), Ninth Revised Edition." United Nations, Geneva. [↗]
GHS
Goldfrank, Lewis R., Robert S. Hoffman, Mary Ann Howland, et al.. 2019. "Goldfrank's Toxicologic Emergencies, 11th ed.." McGraw-Hill Education, New York. ISBN 978-1-25-985961-8.
Premiers secours, Toxicologie
National Institute for Occupational Safety and Health (NIOSH). 2023. "NIOSH Pocket Guide to Chemical Hazards (DHHS Publ. 2005-149)." U.S. Department of Health and Human Services / CDC, Cincinnati, OH. [↗]
Premiers secours, EPI, Toxicologie
European Committee for Standardization (CEN). 2016. "EN 374-1:2016 — Protective gloves against dangerous chemicals and micro-organisms." CEN, Brussels. [↗]
EPI
UNECE. 2023. "European Agreement Concerning the International Carriage of Dangerous Goods by Road (ADR 2025)." United Nations, Geneva. [↗]
Élimination, Réglementation
National Fire Protection Association (NFPA). 2022. "NFPA 400 — Hazardous Materials Code." NFPA, Quincy, MA. [↗]
Stockage
Urben, P.G. (ed.). 2017. "Bretherick's Handbook of Reactive Chemical Hazards, 8th ed.." Butterworth-Heinemann / Elsevier, Oxford. [↗]
Stockage
Ministerstwo Klimatu i Środowiska RP. 2023. "Baza danych o produktach i opakowaniach oraz o gospodarce odpadami (BDO)." Ministerstwo Klimatu i Środowiska, Warszawa. Règles nationales — Pologne[↗]
Élimination
International Agency for Research on Cancer (IARC / WHO). 2024. "IARC Monographs on the Identification of Carcinogenic Hazards to Humans — List of Classifications." WHO, Lyon. [↗]
Toxicologie
Les onglets possédant leurs propres références (Emergency, PPE, Storage, Waste) contiennent des entrées bibliographiques supplémentaires au sein de leurs sections respectives.
Collez une série de mesures répétées (CSV ou un nombre par ligne). Le calculateur calculera la moyenne, l'écart-type, l'IC à 95 %, et détectera les valeurs aberrantes (Grubbs + Dixon Q).
Séparateur : virgule, espace, tabulation, nouvelle ligne. Min. 3 mesures.
Choisissez un tampon dans la liste de 20 systèmes courants → saisissez le pH cible → vous obtiendrez une recette exacte avec les masses à peser.
Étape 1 : Choisissez un système tampon
Étape 2 : Paramètres du tampon
Étape 3 : Votre recette
Procédure étape par étape :
📐 Détails du calcul (Henderson-Hasselbalch)
📜 Historique des recettes (10 dernières)
📅Project Planner — Gestionnaire d'expériences de laboratoireNOUVEAU
Planifiez l'ensemble de votre projet de laboratoire : ajoutez des expériences avec réactifs, réplicats et durée. Vous obtiendrez un diagramme de Gantt, une liste d'achats (avec des liens vers la boutique !), un budget avec une marge de 10 % et une matrice de risques GHS.
💡 Connectez-vous pour enregistrer des projets.
Sans connexion, vous pouvez calculer mais pas enregistrer.
🧪 Solubilité et compatibilité avec les solvants
Molécule
Vanillin
Formule
C8H8O3
logP (XLogP3)
1.20
Masse (g/mol)
152.15
Polarité
Modérée
⚠️ Estimation GC (Hoftyzer-Van Krevelen). Aucune donnée HSP de la littérature pour ce CAS — précision ±2 MPa½. À vérifier expérimentalement.
Solvant
Compat.
Ra
Visuel
GC-MS
HPLC
Applications
Références
Ra < R₀ = good miscibility · Ra < 1,5×R₀ = borderline · above = poor (R₀ — radius of the Hansen sphere of this molecule) For this molecule R₀ = 8..
Théorie de la solubilité (appliquée à la prédiction de la compatibilité) :
Yalkowsky, Samuel H., and Shri C. Valvani. 1980. "Solubility and Partitioning I: Solubility of Nonelectrolytes in Water." Journal of Pharmaceutical Sciences 69 (8): 912–922. https://doi.org/10.1002/jps.2600690814 — General Solubility Equation (GSE): logS = 0.5 − logP − 0.01(MP−25).
Hansen, Charles M. 2007. Hansen Solubility Parameters: A User's Handbook. 2nd ed. CRC Press. https://doi.org/10.1201/9781420006834 — Triplet HSP (dD, dP, dH) + formule Ra.
Stefanis, E., and C. Panayiotou. 2008. "Prediction of Hansen Solubility Parameters with a New Group-Contribution Method." Int J Thermophys 29: 568–585. https://doi.org/10.1007/s10765-008-0415-z
Reichardt, Christian, and Thomas Welton. 2011. Solvents and Solvent Effects in Organic Chemistry. 4th ed. Wiley-VCH. https://doi.org/10.1002/9783527632220 — E_T(30) polarity scale, solwatochromia.
Snyder, Lloyd R., Joseph J. Kirkland, and John W. Dolan. 2010. Introduction to Modern Liquid Chromatography. 3rd ed. Wiley. https://doi.org/10.1002/9780470508183 — Eluotropic series, polarity index.
Van Krevelen, D. W., and K. Te Nijenhuis. 2009. Properties of Polymers. 4th ed. Elsevier. https://doi.org/10.1016/B978-0-08-054819-7.X0001-5 — Hoftyzer–Van Krevelen group contribution dla dD/dP/dH z SMILES.
Marcus, Yizhak. 1998. The Properties of Solvents. Wiley Series in Solution Chemistry, Vol. 4. ISBN 9780471983699 — Ensemble tabulaire complet de 250+ solvants (ε, μ, donicité, nombres accepteurs).
PubChem Compound Database — CAS 121-33-5 lookup ↗ — logP (XLogP3), water solubility experimental + predicted.
Bibliographie complète dans l'accordéon RÉFÉRENCES (en bas de la page) — Chicago Manual of Style 17th ed., Author-Date.
🧮 Calculateur de solubilité
Solubilité :—
logS:—
Méthode :—
⚠️ —
Solubilité vs température
🌐 Hansen Solubility Sphere (3D)
⚠️ The Hansen parameters for this substance fall outside the range of the method.
At least one of the δD/δP/δH parameters fell outside the domain of validity of the group contribution method (Hoftyzer–Van Krevelen), so the position of the molecule in Hansen space is unknown. The distance Ra is measured FROM THAT POINT — it cannot be calculated without knowing the point. The sphere and the distance table have been omitted rather than filled with numbers that have nothing behind them. Where a solubility measurement exists, it is shown in the table below.
📊 Thèmes extraits automatiquement à partir des résumés de 9 publications pour CAS 121-33-5.
Algorithme : TF-IDF (Salton & Buckley 1988) — fréquence du terme × fréquence inverse de document.
production 2
signaling 2
🔍 Détails du classement (TF-IDF)
Tag
TF
DF
IDF
Score
production
2
2
2.204
4.408
signaling
2
2
2.204
4.408
🔗 Citation network9 articles de départ
📊 Graf citations pour CAS 121-33-5.
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Disposal of vanillin and of its packaging is section 13, and it has to align with the classification: a substance with an aquatic hazard cannot be routed to drain, and the waste code assigned by the holder follows from the hazard profile, not from convenience.
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Aucun certificat pour ce produit dans la base de données.
📚 Références scientifiques (Chicago Author-Date) — cliquez pour développer
Normes de gestion des lots et de certification en laboratoire — 13 sources indépendantes (ICH Q1/Q3/Q6/Q7/Q10 + ISO 17025 + WHO TRS + 21 CFR 211 + EMA + USP + Ph.Eur. + PIC/S + IPEC-PQG).
International Council for Harmonisation (ICH). 2000. "Q7 Good Manufacturing Practice Guide for Active Pharmaceutical Ingredients." ICH Expert Working Group. [lien ↗] — GMP for APIs — adopted by EMA, FDA, MHLW
International Organization for Standardization. 2017. "ISO/IEC 17025:2017 General requirements for the competence of testing and calibration laboratories." ISO. [lien ↗] — Lab accreditation standard underpinning every CoA
World Health Organization. 2010. "WHO Good Manufacturing Practices for Pharmaceutical Products: Main Principles (WHO Technical Report Series No. 957, Annex 3)." WHO Press. [lien ↗] — WHO TRS No. 957 — global reference for GMP
International Council for Harmonisation (ICH). 2003. "ICH Q1A(R2): Stability Testing of New Drug Substances and Products." International Council for Harmonisation. [lien ↗] — Source for batch shelf-life and retest dating
International Council for Harmonisation (ICH). 2006. "ICH Q3A(R2): Impurities in New Drug Substances." ICH. [lien ↗]
International Council for Harmonisation (ICH). 1999. "ICH Q6A: Specifications for New Drug Substances and Products." ICH. [lien ↗] — CoA acceptance-criteria specification standard
International Council for Harmonisation (ICH). 2008. "ICH Q10: Pharmaceutical Quality System." ICH. [lien ↗]
U.S. Food and Drug Administration. 2024. "21 CFR Part 211: Current Good Manufacturing Practice for Finished Pharmaceuticals." US Code of Federal Regulations. [lien ↗] — US legal mandate (Subpart J — Records and Reports)
European Medicines Agency. 2014. "Guideline on Process Validation for Finished Products — Information and Data to Be Provided EMA/CHMP/CVMP/QWP/BWP/70278/2012." European Medicines Agency. [lien ↗]
United States Pharmacopeial Convention. 2024. "United States Pharmacopeia and National Formulary, USP 47-NF 42." USP. [lien ↗]
European Pharmacopoeia Commission. 2024. "European Pharmacopoeia 11th Edition." Council of Europe — EDQM. [lien ↗]
Pharmaceutical Inspection Co-operation Scheme (PIC/S). 2021. "Guide to Good Manufacturing Practice for Medicinal Products PE 009-15." PIC/S Secretariat, Geneva. [lien ↗] — Cross-recognized GMP for 54 inspectorates worldwide
International Pharmaceutical Excipients Council (IPEC) and Pharmaceutical Quality Group (PQG). 2017. "Joint IPEC-PQG Good Manufacturing Practices Guide for Pharmaceutical Excipients." IPEC-Americas. [lien ↗] — Excipient-grade CoA standard for non-API ingredients
📜 Brevets (métadonnées publiques)
aucune donnée
Aucune métadonnée de brevet publique n'a été trouvée pour cette substance dans Crossref / OpenAlex pour le moment. Les données seront complétées automatiquement après le rafraîchissement du cache (24h).
📚 Références (Chicago Author-Date) — cliquez pour développer
Zhang M, Subramaniyan S, Hakkarainen M. (2025). "Divanillin Cross-Linked Recyclable Cellulose Networks.". Macromolecular rapid communications. https://doi.org/10.1002/marc.202401094
Kamaly NA, Kamel AS, Sadik NA et al.. (2025). "Milnacipran and Vanillin Alleviate Fibromyalgia-Associated Depression in Reserpine-Induced Rat Model: Role of Wnt/β-Catenin Signaling.". Molecular neurobiology. https://doi.org/10.1007/s12035-025-04723-w
Abdelghafour AM, Mahrous M, Zaher ME. (2025). "Vanillin alleviates oxidative stress-mediated neuronal pyroptosis induced in rats by isoproterenol via SIRT1/NOX4/ROS/TXNIP/NLRP3 signaling pathway.". Food & function. https://doi.org/10.1039/d4fo06458e
Santos LDF, Lautru S, Pernodet JL. (2024). "Genetic Engineering Approaches for the Microbial Production of Vanillin.". Biomolecules. https://doi.org/10.3390/biom14111413
Stoff H. (2024). "Paulina S. Gennermann 2023: Eine Geschichte mit Geschmack. Die Natur synthetischer Aromastoffe im 20. Jahrhundert am Beispiel Vanillin und Lisa Haushofer 2022: Wonder Foods: The Science and Commerce of Nutrition.". NTM. https://doi.org/10.1007/s00048-024-00384-3
Liu Y, Sun L, Huo YX et al.. (2023). "Strategies for improving the production of bio-based vanillin.". Microbial cell factories. https://doi.org/10.1186/s12934-023-02144-9
Ma Q, Liu L, Zhao S et al.. (2022). "Biosynthesis of vanillin by different microorganisms: a review.". World journal of microbiology & biotechnology. https://doi.org/10.1007/s11274-022-03228-1
Rakoczy K, Szlasa W, Saczko J et al.. (2021). "Therapeutic role of vanillin receptors in cancer.". Advances in clinical and experimental medicine : official organ Wroclaw Medical University. https://doi.org/10.17219/acem/139398
World Intellectual Property Organization. 2024. "Patent Cooperation Treaty (PCT)." https://www.wipo.int/pct/.
U.S. Patent and Trademark Office. 2024. "USPTO Patent Public Search." https://ppubs.uspto.gov/.
European Patent Office. 2024. "Espacenet Patent Search." https://worldwide.espacenet.com/.
Newman, David J., and Gordon M. Cragg. 2020. "Natural Products as Sources of New Drugs over the Nearly Four Decades from 01/1981 to 09/2019." Journal of Natural Products 83 (3): 770-803.
Davies, Mark, Michał Nowotka, George Papadatos, et al. 2015. "ChEMBL Web Services: Streamlining Access to Drug Discovery Data and Utilities." Nucleic Acids Research 43 (W1): W612-W620.
Bickerton, G. Richard, Gaia V. Paolini, Jérémy Besnard, Sorel Muresan, and Andrew L. Hopkins. 2012. "Quantifying the Chemical Beauty of Drugs." Nature Chemistry 4 (2): 90-98.
Meanwell, Nicholas A. 2011. "Synopsis of Some Recent Tactical Application of Bioisosteres in Drug Design." Journal of Medicinal Chemistry 54 (8): 2529-2591.
Ertl, Peter, and Ansgar Schuffenhauer. 2009. "Estimation of Synthetic Accessibility Score of Drug-Like Molecules Based on Molecular Complexity and Fragment Contributions." Journal of Cheminformatics 1: 8.
Hopkins, Andrew L., and Colin R. Groom. 2002. "The Druggable Genome." Nature Reviews Drug Discovery 1 (9): 727-730.
Allison, John R., and Mark A. Lemley. 1998. "Empirical Evidence on the Validity of Litigated Patents." AIPLA Quarterly Journal 26 (3): 185-275.
Patani, George A., and Edmond J. LaVoie. 1996. "Bioisosterism: A Rational Approach in Drug Design." Chemical Reviews 96 (8): 3147-3176.
Lerner, Josh. 1994. "The Importance of Patent Scope: An Empirical Analysis." RAND Journal of Economics 25 (2): 319-333.
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📚 RÉFÉRENCES (Bibliographie agrégée, Chicago Author-Date) 77 éléments
Toutes les sources scientifiques citées dans les accordéons ci-dessus pour le CAS 121-33-5. Format : Chicago Manual of Style, 17e éd., système Auteur-Date.
AIST. n.d. Spectral Database for Organic Compounds (SDBS): CAS 121-33-5. Tsukuba, Japan: National Institute of Advanced Industrial Science and Technology. https://sdbs.db.aist.go.jp/.
Linstrom, Peter J., and William G. Mallard, eds. n.d. NIST Chemistry WebBook: NIST Standard Reference Database Number 69. Gaithersburg, MD: National Institute of Standards and Technology. https://doi.org/10.18434/T4D303.
PubChem. n.d. PubChem Compound Summary: CAS 121-33-5. Bethesda, MD: National Center for Biotechnology Information (NCBI), National Library of Medicine. https://pubchem.ncbi.nlm.nih.gov/#query=121-33-5.
European Chemicals Agency (ECHA). 2024. "Annex VI to Regulation (EC) No 1272/2008 (CLP) — Harmonised Classification and Labelling." ECHA, Helsinki / Official Journal of the European Union. https://echa.europa.eu/regulations/clp/clp-classification.
National Institute for Occupational Safety and Health (NIOSH). 2017. "Recommendations for Chemical Protective Clothing: A Companion to the NIOSH Pocket Guide." U.S. Department of Health & Human Services / CDC. https://www.cdc.gov/niosh/ncpc/default.html.
Connors, Kenneth A., Gordon L. Amidon, and Valentino J. Stella. 1986. Chemical Stability of Pharmaceuticals: A Handbook for Pharmacists, 2nd ed.. New York: Wiley. https://doi.org/10.1002/0471734683.
Rumble, John R., ed. 2019. CRC Handbook of Chemistry and Physics: 100th Edition. Boca Raton, FL: CRC Press. https://hbcp.chemnetbase.com/.
Stefanis, Emmanuel, and Costas Panayiotou. 2008. "Prediction of Hansen Solubility Parameters with a New Group-Contribution Method." International Journal of Thermophysics 29: 568-585. https://doi.org/10.1007/s10765-008-0415-z.
Stoll, Vincent S., and John S. Blanchard. 1990. "Buffers: Principles and Practice: In Methods in Enzymology, vol. 182." San Diego: Academic Press. https://doi.org/10.1016/0076-6879(90)82008-P.
European Parliament. 2008. "Regulation (EC) No 1272/2008 on Classification, Labelling and Packaging of Substances and Mixtures (CLP)." Official Journal of the European Union L 353: 1–1355.
United Nations. 2021. Globally Harmonized System of Classification and Labelling of Chemicals (GHS). 9th revised ed. ST/SG/AC.10/30/Rev.9. New York and Geneva: United Nations. https://unece.org/ghs-rev9-2021.
United States Pharmacopeial Convention. 2024. "USP <621> Chromatography." In United States Pharmacopeia and National Formulary, USP 47-NF 42. Rockville, MD: USP. https://www.uspnf.com/.
International Organization for Standardization. 2017. "ISO/IEC 17025:2017 General Requirements for the Competence of Testing and Calibration Laboratories." Geneva: ISO. https://www.iso.org/standard/66912.html.
Kolthoff, Izaak Maurits, and Philip J. Elving, eds. 1978. Treatise on Analytical Chemistry, Part I: Theory and Practice. 2nd ed. New York: Wiley-Interscience.
Skoog, Douglas A., F. James Holler, and Stanley R. Crouch. 2018. Principles of Instrumental Analysis. 7th ed. Boston: Cengage Learning.
Christian, Gary D., Purnendu K. Dasgupta, and Kevin A. Schug. 2014. Analytical Chemistry. 7th ed. Hoboken, NJ: Wiley.
International Organization for Standardization. 1994. "ISO 5725-2:1994 Accuracy (Trueness and Precision) of Measurement Methods and Results — Part 2: Basic Method for the Determination of Repeatability and Reproducibility of a Standard Measurement Method." Geneva: ISO. https://www.iso.org/standard/11834.html.
Heckert, N. A., and J. J. Filliben. 2003. "NIST/SEMATECH e-Handbook of Statistical Methods." NIST Handbook 151. Gaithersburg, MD: National Institute of Standards and Technology. https://www.itl.nist.gov/div898/handbook/.
Grubbs, Frank E. 1950. "Sample Criteria for Testing Outlying Observations." Annals of Mathematical Statistics 21 (1): 27–58.
Dixon, Wilfrid J. 1950. "Analysis of Extreme Values." Annals of Mathematical Statistics 21 (4): 488–506.
Snedecor, George W., and William G. Cochran. 1989. Statistical Methods. 8th ed. Ames, IA: Iowa State University Press.
Student [William Sealy Gosset]. 1908. "The Probable Error of a Mean." Biometrika 6 (1): 1–25.
International Organization for Standardization. 2005. "ISO 3534-1:2006 Statistics — Vocabulary and Symbols — Part 1: General Statistical Terms and Terms Used in Probability." Geneva: ISO. https://www.iso.org/standard/40145.html.
Thompson, Michael, Stephen L. R. Ellison, and Roger Wood. 2002. "Harmonized Guidelines for Single-Laboratory Validation of Methods of Analysis." Pure and Applied Chemistry 74 (5): 835–855.
United Nations Economic Commission for Europe. 2024. European Agreement Concerning the International Carriage of Dangerous Goods by Road (ADR), Applicable as from 1 January 2025 (ECE/TRANS/352). Geneva: UNECE. https://unece.org/transport/dangerous-goods/adr-2025-edition.
Ministerstwo Klimatu i Środowiska Rzeczypospolitej Polskiej. 2020. "Rozporządzenie Ministra Klimatu z dnia 2 stycznia 2020 r. w sprawie katalogu odpadów." Dziennik Ustaw RP 2020 poz. 10. https://isap.sejm.gov.pl/isap.nsf/DocDetails.xsp?id=WDU20200000010. Règles nationales — Pologne
Główny Inspektorat Ochrony Środowiska (GIOŚ). 2024. "Baza Danych O Odpadach (BDO) — System rejestracji firm utylizacyjnych." Ministerstwo Klimatu i Środowiska. https://bdo.mos.gov.pl/. Règles nationales — Pologne
International Organization for Standardization. 2017. "ISO/IEC 17025:2017 General requirements for the competence of testing and calibration laboratories." ISO. https://www.iso.org/standard/66912.html.
World Health Organization. 2010. "WHO Good Manufacturing Practices for Pharmaceutical Products: Main Principles (WHO Technical Report Series No. 957, Annex 3)." WHO Press. https://www.who.int/publications/m/item/trs957-annex3.
Pharmaceutical Inspection Co-operation Scheme (PIC/S). 2021. "Guide to Good Manufacturing Practice for Medicinal Products PE 009-15." PIC/S Secretariat, Geneva. https://picscheme.org/en/publications.