Einecs 284-892-9 (CAS 84989-04-8)

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间对甲酚 C₇ H₈O. CAS 84989-04-8. 优级.

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Przegląd chemiczny: Tar acids, methylphenol fraction
Wzór sumaryczny2C7H8O[1]
Masa cząsteczkowa216.27 g/mol[1]
Nazwa IUPAC3-methylphenol;4-methylphenol[1]
SMILESCC1=CC=C(C=C1)O.CC1=CC(=CC=C1)O[1]
InChIKeyPHVAHRJIUQBTHJ-UHFFFAOYSA-N[1]

Synonimy: EINECS 284-892-9 · EC 284-892-9 · RefChem:891128 · 284-892-9 · 84989-04-8

Data sources: PubChem (NLM/NIH)
Last updated: 2026-09-04

📚 Naukowe referencje (Chicago Author-Date) (1 źródeł)
  1. PubChem. National Center for Biotechnology Information (NIH/NLM), chemical compound database. dotyczy: Wzór sumaryczny · Masa cząsteczkowa · Nazwa IUPAC · SMILES · InChIKey

BADANIA NAUKOWE

[1]OpenAlex2025
Jing Zhang, Peng Li, Siyan Li et al.. (2025). "Assessment of environmental impacts of heavy metal pollution in rice in Nanning, China". Scientific Reports. https://doi.org/10.1038/s41598-024-84989-7
[2]Core2025
04 CE-20250002933197-signed
04 CE-20250002933197-signed, 04 CE-20250002933197-signed. (2025). "04 CE-20250002933197-signed". 04 CE-20250002933197-signed.
[3]OpenAlex2024
Philip Rasmussen, Herman W. Barkema, Prince P. Osei et al.. (2024). "Global losses due to dairy cattle diseases: A comorbidity-adjusted economic analysis". Journal of Dairy Science. https://doi.org/10
[4]OpenAlex2024
Hugo Doré, Amy Eisenberg, Emily N. Junkins et al.. (2024). "Targeted hypermutation of putative antigen sensors in multicellular bacteria". Proceedings of the National Academy of Sciences. https://doi.
[5]OpenAlex2023
Worldwide Antimicrobial Resistance National/International Network Group (WARNING) Collaborators, Massimo Sartelli, Philip S. Barie et al.. (2023). "Ten golden rules for optimal antibiotic use in hospi
[6]OpenAlex2023
Channa Keshava, Suna Nicolai, Suryanarayana V. Vulimiri et al.. (2023). "Application of systematic evidence mapping to identify available data on the potential human health hazards of selected market-
[7]CrossRef2022
Na Luo, Xiajie Zhang, Shan Chen et al.. (2022). "Effects of cadmium (Cd) on fungal richness, diversity, and community structure of Haplic Cambisols and inference of resistant fungal genera". Environme
[8]CrossRef2022
Jakub Korczakowski, Grzegorz Sarwas, Witold Czajewski. (2022). "CoU2Net and CoLDF: Two Novel Methods Built on Basis of Double-Branch Co-Salient Object Detection Framework". IEEE Access. https://doi.or
📚 Naukowe referencje (Chicago Author-Date) 20 refs · 3 baz

MOLECULE Bibliografia per-CAS (live z 13+ baz)

Źródła: db:openalex (15) · db:core (1) · db:crossref (4)

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  2. db:core 04 CE-20250002933197-signed, 04 CE-20250002933197-signed. (2025). "04 CE-20250002933197-signed". 04 CE-20250002933197-signed.
  3. db:openalex Philip Rasmussen, Herman W. Barkema, Prince P. Osei et al.. (2024). "Global losses due to dairy cattle diseases: A comorbidity-adjusted economic analysis". Journal of Dairy Science. https://doi.org/10.3168/jds.2023-24626
  4. db:openalex Hugo Doré, Amy Eisenberg, Emily N. Junkins et al.. (2024). "Targeted hypermutation of putative antigen sensors in multicellular bacteria". Proceedings of the National Academy of Sciences. https://doi.org/10.1073/pnas.2316469121
  5. db:openalex Worldwide Antimicrobial Resistance National/International Network Group (WARNING) Collaborators, Massimo Sartelli, Philip S. Barie et al.. (2023). "Ten golden rules for optimal antibiotic use in hospital settings: the WARNING call to action". World Journal of Emergency Surgery. https://doi.org/10.1186/s13017-023-00518-3
  6. db:openalex Channa Keshava, Suna Nicolai, Suryanarayana V. Vulimiri et al.. (2023). "Application of systematic evidence mapping to identify available data on the potential human health hazards of selected market-relevant azo dyes". Environment International. https://doi.org/10.1016/j.envint.2023.107952
  7. db:crossref Na Luo, Xiajie Zhang, Shan Chen et al.. (2022). "Effects of cadmium (Cd) on fungal richness, diversity, and community structure of Haplic Cambisols and inference of resistant fungal genera". Environmental Science and Pollution Research. https://doi.org/10.1007/s11356-022-21818-2
  8. db:crossref Jakub Korczakowski, Grzegorz Sarwas, Witold Czajewski. (2022). "CoU2Net and CoLDF: Two Novel Methods Built on Basis of Double-Branch Co-Salient Object Detection Framework". IEEE Access. https://doi.org/10.1109/access.2022.3197752
  9. db:openalex Abhay V. Agrawal, Naveen Kumar, Mukesh Kumar. (2021). "Strategy and Future Prospects to Develop Room-Temperature-Recoverable NO2 Gas Sensor Based on Two-Dimensional Molybdenum Disulfide". Nano-Micro Letters. https://doi.org/10.1007/s40820-020-00558-3
  10. db:openalex Zhenglai Hua, Rui Liu, Youwen Chen et al.. (2021). "Contamination of Aflatoxins Induces Severe Hepatotoxicity Through Multiple Mechanisms". Frontiers in Pharmacology. https://doi.org/10.3389/fphar.2020.605823
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  14. db:openalex Anik Banik, Sheikh Rashel Ahmed, Emran Hossain Sajib et al.. (2020). "Identification of potential inhibitory analogs of metastasis tumor antigens (MTAs) using bioactive compounds: revealing therapeutic option to prevent malignancy". bioRxiv (Cold Spring Harbor Laboratory). https://doi.org/10.1101/2020.10.19.345975
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  16. db:crossref Binlong Chen, Diyan Li, Miao Li et al.. (2016). "Induction of mitochondria-mediated apoptosis and PI3K/Akt/ mTOR-mediated autophagy by aflatoxin B2 in hepatocytes of broilers". Oncotarget. https://doi.org/10.18632/oncotarget.13356
  17. db:crossref Jaeyeong Lee, Aram Lee, Hak Ki Yu. (2016). "Graphene protected Ag nanowires: blocking of surface migration for thermally stable and wide-range-wavelength transparent flexible electrodes". RSC Advances. https://doi.org/10.1039/c6ra17173g
  18. db:openalex Lan Liu, Wei Du, Lihua Pang et al.. (2014). "Incidence of road traffic disabilities trending upwards in transitional China: a retrospective analysis from 1980 to 2005". BMJ Open. https://doi.org/10.1136/bmjopen-2013-004297
  19. db:openalex Allegra N. LeGrande, Jean Lynch‐Stieglitz, E. Christa Farmer. (2004). "Oxygen isotopic composition of Globorotalia truncatulinoides as a proxy for intermediate depth density". Paleoceanography. https://doi.org/10.1029/2004pa001045
  20. db:openalex Andrea Marzoli, E. M. Piccirillo, Paul R. Renne et al.. (2000). "The Cameroon Volcanic Line Revisited: Petrogenesis of Continental Basaltic Magmas from Lithospheric and Asthenospheric Mantle Sources". Journal of Petrology. https://doi.org/10.1093/petrology/41.1.87
Status regulacyjny substancji
Ta substancja podlega wymogom regulacyjnym: gospodarka odpadami niebezpiecznymi (BDO). Szczegoly w sekcji "Status regulacyjny (REACH/ECHA/CLP)" oraz na karcie SDS. Informacja regulacyjna — nie ogranicza zakupu w sklepie.
🧪 Dane chemiczne
Numer CAS
84989-04-8
Wzór sumaryczny
2C7H8O
Masa molowa
216.27 g/mol
Nazwa IUPAC (EN)
3-methylphenol;4-methylphenol
SMILES
CC1=CC=C(C=C1)O.CC1=CC(=CC=C1)O
InChIKey
PHVAHRJIUQBTHJ-UHFFFAOYSA-N
🔍 Identyfikatory zewnętrzne
7 z 16 systemów ID44%
BazaIdentyfikatorAkcje
CAS Registry Number84989-04-8Otwórz →
PubChem CID21829806[1]Otwórz →
InChIKeyPHVAHRJIUQBTHJ-UHFFFAOYSA-N[1]Otwórz →
InChIInChI=1S/2C7H8O/c1-6-2-4-7(8)5-3-6;1-6-3-2-4-7(8…[1]
SMILESCC1=CC=C(C=C1)O.CC1=CC(=CC=C1)O[1]
EC Number284-892-9[2]Otwórz →
WikiData QIDQ72534076Otwórz →

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

📚 Naukowe referencje (Chicago Author-Date) (2 źródeł)
  1. PubChem. National Center for Biotechnology Information (NIH/NLM), chemical compound database. dotyczy: PubChem CID · InChIKey · InChI · 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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间对甲酚 C₇ H₈O — CAS 84989-04-8, 优级. Listed by Shanxi Hyd. Prepared from the supplier’s public catalogue; not verified against their internal data.

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