CAS 53378-51-1

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Flotimine 245 (Фосфордитионовая кислота). CAS 53378-51-1.

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Chemische Übersicht: Phosphorodithioic acid, O,O-bis(2-methylpropyl) ester, sodium salt (1:1)
SummenformelC₈H₁₈NaO₂PS₂
Molekulargewicht264.3 g/mol
IUPAC-Namesodium bis(2-methylpropoxy)-sulfanylidene-sulfido-lambda5-phosphane
SMILESCC(C)COP(=S)(OCC(C)C)[S-].[Na+]
InChIKeyFOYPFIDVYRCZKA-UHFFFAOYSA-M

Synonyme: Sodium O,O-diisobutyl dithiophosphate · Phosphorodithioic acid, O,O-bis(2-methylpropyl) ester, sodium salt · Sodium diisobutyldithiophosphate · Isobutyl sodium phosphorodithioate · EINECS 258-508-5

Datenquellen: PubChem (NLM/NIH)
Zuletzt aktualisiert: 2026-09-03

WISSENSCHAFTLICHE FORSCHUNG

[1]CrossRef2026
Changho Kim, Jeongrok Seo, Chanho Kim et al.. (2026). "SymptoMatch: Improving Clinical Symptom Recognition via Bidirectional Learning From Layman Expression". IEEE Access. https://doi.org/10.1109/acce
[2]CrossRef2025
Lucas Ramos, Talita M. Lacerda, André Ferraz et al.. (2025). "Upcycling Sugar Cane Biomass into 2G Sugars and Lignin-Derived Biochars for Preparing Carbon-Based Electrodes". ACS Omega. https://doi.org
[3]CrossRef2025
Ke Yuan, Ziyi Dong, Xiuling Li et al.. (2025). "An Efficient and Collusion-Resistant Key Parameters Predistribution System for Day-Ahead Electricity Auctions". IEEE Internet of Things Journal. https:/
[4]CrossRef2024
(2024). "No. 53378 South Africa and Argentina". United Nations Treaty Series. https://doi.org/10.18356/9789213588406c008
[5]CrossRef2024
Zaryab Alam, Yousef Salem, Rashwan Alameddine et al.. (2024). "53378 Evaluating the Quality and Evidence of Microneedling Videos on TikTok". Journal of the American Academy of Dermatology. https://doi
[6]CrossRef2021
Lidong Fu, Wenbo Zhang, Xiaobo Tan et al.. (2021). "An Algorithm for Detection of Traffic Attribute Exceptions Based on Cluster Algorithm in Industrial Internet of Things". IEEE Access. https://doi.or
[7]CrossRef2021
Khairia M. Al-Qahtani, Mohamed H. H. Ali, Mohamad S. Abdelkarim et al.. (2021). "Efficiency of extremophilic microbial mats for removing Pb(II), Cu(II), and Ni(II) ions from aqueous solutions". Enviro
[8]CrossRef2017
Jimi Eom, Jae-Sang Heo, Minho Kim et al.. (2017). "Highly sensitive textile-based strain sensors using poly(3,4-ethylenedioxythiophene):polystyrene sulfonate/silver nanowire-coated nylon threads with
📚 Wissenschaftliche Referenzen (Chicago Author-Date) 15 refs · 1 baz

MOLECULE Bibliografie pro CAS (live aus 13+ Datenbanken)

Quellen: db:crossref (15)

  1. db:crossref Changho Kim, Jeongrok Seo, Chanho Kim et al.. (2026). "SymptoMatch: Improving Clinical Symptom Recognition via Bidirectional Learning From Layman Expression". IEEE Access. https://doi.org/10.1109/access.2026.3680516
  2. db:crossref Lucas Ramos, Talita M. Lacerda, André Ferraz et al.. (2025). "Upcycling Sugar Cane Biomass into 2G Sugars and Lignin-Derived Biochars for Preparing Carbon-Based Electrodes". ACS Omega. https://doi.org/10.1021/acsomega.5c08482
  3. db:crossref Ke Yuan, Ziyi Dong, Xiuling Li et al.. (2025). "An Efficient and Collusion-Resistant Key Parameters Predistribution System for Day-Ahead Electricity Auctions". IEEE Internet of Things Journal. https://doi.org/10.1109/jiot.2025.3616212
  4. db:crossref (2024). "No. 53378 South Africa and Argentina". United Nations Treaty Series. https://doi.org/10.18356/9789213588406c008
  5. db:crossref Zaryab Alam, Yousef Salem, Rashwan Alameddine et al.. (2024). "53378 Evaluating the Quality and Evidence of Microneedling Videos on TikTok". Journal of the American Academy of Dermatology. https://doi.org/10.1016/j.jaad.2024.07.829
  6. db:crossref Lidong Fu, Wenbo Zhang, Xiaobo Tan et al.. (2021). "An Algorithm for Detection of Traffic Attribute Exceptions Based on Cluster Algorithm in Industrial Internet of Things". IEEE Access. https://doi.org/10.1109/access.2021.3068756
  7. db:crossref Khairia M. Al-Qahtani, Mohamed H. H. Ali, Mohamad S. Abdelkarim et al.. (2021). "Efficiency of extremophilic microbial mats for removing Pb(II), Cu(II), and Ni(II) ions from aqueous solutions". Environmental Science and Pollution Research. https://doi.org/10.1007/s11356-021-14571-5
  8. db:crossref Jimi Eom, Jae-Sang Heo, Minho Kim et al.. (2017). "Highly sensitive textile-based strain sensors using poly(3,4-ethylenedioxythiophene):polystyrene sulfonate/silver nanowire-coated nylon threads with poly- l -lysine surface modification". RSC Advances. https://doi.org/10.1039/c7ra10722f
  9. db:crossref Chiranjit Patra, Anup Kumar Bhanja, Chandana Sen et al.. (2016). "Imine-functionalized thioether Zn( ii ) turn-on fluorescent sensor and its selective sequential logic operations with H 2 PO 4 − , DFT computation and live cell imaging". RSC Advances. https://doi.org/10.1039/c6ra07089b
  10. db:crossref (2012). "Pentamethyltantalum 53378‐72‐6". Sax's Dangerous Properties of Industrial Materials. https://doi.org/10.1002/0471701343.sdp45627
  11. db:crossref (2012). "5′,6′,7′,8′‐Tetrahydrodispiro(Cyclohexane‐1,2′(3′H)‐Quinazoline‐4′,1′′(4 a′H)‐Cyclohexane) 53378‐71‐5". Sax's Dangerous Properties of Industrial Materials. https://doi.org/10.1002/0471701343.sdp49332
  12. db:crossref Kunishige Kataoka, Kazuya Yamaguchi, Mayuko Kobayashi et al.. (2004). "Structure-based Engineering of Alcaligenes xylosoxidans Copper-containing Nitrite Reductase Enhances Intermolecular Electron Transfer Reaction with Pseudoazurin". Journal of Biological Chemistry. https://doi.org/10.1074/jbc.m410198200
  13. db:crossref (2004). "Pentamethyltantalum 53378‐72‐6". Sax's Dangerous Properties of Industrial Materials. https://doi.org/10.1002/0471701343.sdp19942
  14. db:crossref (2004). "5′,6′,7′,8′‐Tetrahydrodispiro(cyclohex‐Ane‐1,2′(3′h)‐Quinazoline‐4′,1″(4 A′h)‐Cyclohexane) 53378‐71‐5". Sax's Dangerous Properties of Industrial Materials. https://doi.org/10.1002/0471701343.sdp23655
  15. db:crossref (0). "53378, 1895-04-02, SUENSON (Jean Jacques), dispacheur, Copenhague †". Art Sales Catalogues Online. https://doi.org/10.1163/2210-7886_asc-53378
Regulatorischer Status der Substanz
Keine Einträge für diese CAS-Nummer in den geprüften Beschränkungslisten (SVHC-Kandidatenliste, REACH Anhang XVII; Datensätze unvollständig – dies ist keine Konformitätsbestätigung). CLP-Einstufung und Transportstatus (ADR): siehe Abschnitt GHS und Sicherheitsdatenblatt (SDS).
🧪 Chemische Daten
CAS-Nummer
53378-51-1
Summenformel
C₈H₁₈NaO₂PS₂
Molmasse
264.3 g/mol
IUPAC-Name (EN)
sodium bis(2-methylpropoxy)-sulfanylidene-sulfido-lambda5-phosphane
SMILES
CC(C)COP(=S)(OCC(C)C)[S-].[Na+]
InChIKey
FOYPFIDVYRCZKA-UHFFFAOYSA-M
🔍 Externe Identifikatoren
6 von 16 ID-Systemen38%
DatenbankIdentifikatorAktionen
CAS Registry Number53378-51-1Öffnen →
PubChem CID23688597[1]Öffnen →
InChIKeyFOYPFIDVYRCZKA-UHFFFAOYSA-M[1]Öffnen →
SMILESCC(C)COP(=S)(OCC(C)C)[S-].[Na+][1]
EC Number258-508-5[2]Öffnen →
WikiData QIDQ72507828Öffnen →

Quellen: PubChem (NIH), Wikidata SPARQL, KEGG, ChEMBL (EBI), CompTox CTX (EPA).

📚 Wissenschaftliche Referenzen (Chicago Author-Date) (2 Quellen)
  1. PubChem. National Center for Biotechnology Information (NIH/NLM), chemical compound database. dotyczy: PubChem CID · InChIKey · SMILES
  2. ECHA. EC Inventory — EINECS, ELINCS, NLP and List Numbers assigned under REACH. Helsinki: European Chemicals Agency. dotyczy: EC Number

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Flotimine 245 (Фосфордитионовая кислота) — CAS 53378-51-1. Listed by Uts Shanghai. Prepared from the supplier’s public catalogue; not verified against their internal data.

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