Dodecanedioic acid, 99%
Dodecanedioic acid, 99%
Dodecanedioic acid, 99%
Thermo Scientific Chemicals

Dodecanedioic acid, 99%

CAS: 693-23-2 | C12H22O4 | 230.304 g/mol
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Quantity:
250 g
1000 g
Catalog number A10387.0B
also known as A10387-0B
Price (USD)
233.00
Each
Quantity:
1000 g
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Price (USD)
233.00
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Chemical Identifiers
CAS693-23-2
IUPAC Namedodecanedioic acid
Molecular FormulaC12H22O4
InChI KeyTVIDDXQYHWJXFK-UHFFFAOYSA-N
SMILESOC(=O)CCCCCCCCCCC(O)=O
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SpecificationsSpecification SheetSpecification Sheet
Appearance (Color)White to cream
FormCrystalline powder or powder or flakes or pellets
Assay (Aqueous acid-base Titration)≥98.5 to ≤101.5% (Non-U.S. specification)
Assay (Silylated GC)≥98.5% (Non-U.S. specification)
Assay from Suppliers CofA≥98.5% (GC, U.S. specification)
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Dodecanedioic acid is used as an intermediate for plasticizers, lubricants and adhesives. It is also used in antiseptics, top-grade coatings, painting materials, corrosion inhibitor and surfactant. It finds application in engineering plastics such as nylon 612.

This Thermo Scientific Chemicals brand product was originally part of the Alfa Aesar product portfolio. Some documentation and label information may refer to the legacy brand. The original Alfa Aesar product / item code or SKU reference has not changed as a part of the brand transition to Thermo Scientific Chemicals.

Applications
Dodecanedioic acid is used as an intermediate for plasticizers, lubricants and adhesives. It is also used in antiseptics, top-grade coatings, painting materials, corrosion inhibitor and surfactant. It finds application in engineering plastics such as nylon 612.

Solubility
Soluble in water, ethanol, hot methanol, hot toluene and hot acetic acid.

Notes
Incompatible with strong oxidizing agents and reducing agents.
RUO – Research Use Only

General References:

  1. Alhendawi, H.; Brunet, E.; Juanes, O.; Hammouda, H.; Idhair, S.; Payán, E. R.; de Victoria Rodríguez, M. New soft porous frameworks based on lambda-zirconium phosphate and aliphatic dicarboxylates: Synthesis and structural characterization. J. Phys. Chem. Solids 2015, 86, 95-100.
  2. Elbasuney, S. Surface engineering of layered double hydroxide (LDH) nanoparticles for polymer flame retardancy. Powder Technol. 2015, 277, 63-73.