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2-Hydroxydecanedioic acid

Base Information
  • Chemical Name:2-Hydroxydecanedioic acid
  • CAS No.:103963-71-9
  • Molecular Formula:C10H18 O5
  • Molecular Weight:218.25
  • Hs Code.:
  • DSSTox Substance ID:DTXSID40869411
  • Nikkaji Number:J1.549.240F
  • Wikidata:Q27161498
  • Metabolomics Workbench ID:1997
  • Mol file:103963-71-9.mol
2-Hydroxydecanedioic acid

Synonyms:2-hydroxysebacic acid

Suppliers and Price of 2-Hydroxydecanedioic acid
Supply Marketing:
Business phase:
The product has achieved commercial mass production*data from LookChem market partment
Manufacturers and distributors:
  • Manufacture/Brand
  • Chemicals and raw materials
  • Packaging
  • price
  • TRC
  • 2-HydroxydecanedioicAcid
  • 50mg
  • $ 865.00
Total 2 raw suppliers
Chemical Property of 2-Hydroxydecanedioic acid
Chemical Property:
  • Vapor Pressure:4.28E-09mmHg at 25°C 
  • Boiling Point:427.3°Cat760mmHg 
  • Flash Point:226.4°C 
  • PSA:94.83000 
  • Density:1.207g/cm3 
  • LogP:1.24720 
  • Storage Temp.:Refrigerator 
  • Solubility.:Methanol (Slightly) 
  • XLogP3:1.4
  • Hydrogen Bond Donor Count:3
  • Hydrogen Bond Acceptor Count:5
  • Rotatable Bond Count:9
  • Exact Mass:218.11542367
  • Heavy Atom Count:15
  • Complexity:202
Purity/Quality:

97% *data from raw suppliers

2-HydroxydecanedioicAcid *data from reagent suppliers

Safty Information:
  • Pictogram(s):  
  • Hazard Codes: 
MSDS Files:

SDS file from LookChem

Useful:
  • Canonical SMILES:C(CCCC(C(=O)O)O)CCCC(=O)O
  • Uses 2-Hydroxydecanedioic Acid is a biomarker to detect?peroxisomal disorders (neonatal adrenoleukodystrophy or Zellweger syndrome) in the urines of children. 2-Hydroxydecanedioic Acid is an oxidation product of sebaic acid (S211410), a urinary metabolite that has been identified as an anti-fatigue biomarker.
Technology Process of 2-Hydroxydecanedioic acid

There total 7 articles about 2-Hydroxydecanedioic acid which guide to synthetic route it. The literature collected by LookChem mainly comes from the sharing of users and the free literature resources found by Internet computing technology. We keep the original model of the professional version of literature to make it easier and faster for users to retrieve and use. At the same time, we analyze and calculate the most feasible synthesis route with the highest yield for your reference as below:

synthetic route:
Guidance literature:
With lithium hydroxide; In tetrahydrofuran; water; for 12h;
DOI:10.1016/j.tetlet.2007.03.053
Guidance literature:
Multi-step reaction with 2 steps
1: 83 percent / RuCl3*3H2O; NaIO4 / acetonitrile; ethyl acetate; H2O / 12 h
2: 80 percent / LiOH / tetrahydrofuran; H2O / 12 h
With ruthenium trichloride; lithium hydroxide; sodium periodate; In tetrahydrofuran; water; ethyl acetate; acetonitrile;
DOI:10.1016/j.tetlet.2007.03.053
Guidance literature:
Multi-step reaction with 3 steps
1: 97 percent / Et3N / CH2Cl2 / 3 h
2: 83 percent / RuCl3*3H2O; NaIO4 / acetonitrile; ethyl acetate; H2O / 12 h
3: 80 percent / LiOH / tetrahydrofuran; H2O / 12 h
With ruthenium trichloride; lithium hydroxide; sodium periodate; triethylamine; In tetrahydrofuran; dichloromethane; water; ethyl acetate; acetonitrile;
DOI:10.1016/j.tetlet.2007.03.053
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