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Atomfair Tetracosanedioic acid C24H46O4
Description Tetracosanedioic acid (CAS 683239-16-9) is a high-purity, long-chain dicarboxylic acid with the molecular formula C24H46O4. This white crystalline solid is a valuable building block in organic synthesis and material science, offering a linear aliphatic structure with terminal carboxyl groups for versatile functionalization. With a molecular weight of 398.63 g/mol, this C24 diacid exhibits excellent thermal stability and is soluble in common organic solvents like ethanol, DMF, and DMSO. Our product is rigorously tested to ensure >98% purity (HPLC) and is supplied in airtight packaging to prevent moisture absorption. Ideal for researchers developing specialty polymers, lubricants, or supramolecular materials, this…
Description
Description
Tetracosanedioic acid (CAS 683239-16-9) is a high-purity, long-chain dicarboxylic acid with the molecular formula C24H46O4. This white crystalline solid is a valuable building block in organic synthesis and material science, offering a linear aliphatic structure with terminal carboxyl groups for versatile functionalization. With a molecular weight of 398.63 g/mol, this C24 diacid exhibits excellent thermal stability and is soluble in common organic solvents like ethanol, DMF, and DMSO. Our product is rigorously tested to ensure >98% purity (HPLC) and is supplied in airtight packaging to prevent moisture absorption. Ideal for researchers developing specialty polymers, lubricants, or supramolecular materials, this compound is available in quantities from grams to kilograms with customizable packaging options.
- CAS No: 683239-16-9
- Molecular Formula: C24H46O4
- Molecular Weight: 398.6
- Exact Mass: 398.33960994
- Monoisotopic Mass: 398.33960994
- IUPAC Name: tetracosanedioic acid
- SMILES: C(CCCCCCCCCCCC(=O)O)CCCCCCCCCCC(=O)O
- Synonyms: Tetracosanedioic acid, 2450-31-9, DTXSID90369158, tetracosanedioate, DTXCID00320194
Application
Tetracosanedioic acid serves as a key monomer in the synthesis of long-chain polyesters and polyamides with enhanced mechanical properties. Researchers utilize this diacid to create self-assembling monolayers and organic frameworks due to its predictable intermolecular interactions. In lubrication science, it acts as a precursor for high-performance ester-based lubricants with superior thermal stability. The compound also finds use in cosmetic formulations as a viscosity modifier and emulsion stabilizer.
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