CAS 13005-36-2
:Benzeneacetic acid, potassium salt (1:1)
Description:
Benzeneacetic acid, potassium salt (1:1), also known as potassium benzeneacetate, is a chemical compound characterized by its salt formation from benzeneacetic acid and potassium. This compound typically appears as a white to off-white crystalline powder and is soluble in water, which facilitates its use in various applications. It is often utilized in organic synthesis and as a reagent in biochemical research due to its ability to act as a source of benzeneacetate ions. The presence of the potassium ion enhances its solubility and stability in aqueous solutions. In terms of safety, it is important to handle this compound with care, as with many organic salts, to avoid potential irritation or adverse reactions. Its applications may extend to pharmaceuticals, where it can serve as an intermediate or a stabilizing agent. Overall, benzeneacetic acid, potassium salt is a versatile compound with significant relevance in both industrial and laboratory settings.
Formula:C8H8O2·K
InChI:InChI=1S/C8H8O2.K/c9-8(10)6-7-4-2-1-3-5-7;/h1-5H,6H2,(H,9,10);
InChI key:InChIKey=XVNKZZHXUPTZER-UHFFFAOYSA-N
SMILES:C(C(O)=O)C1=CC=CC=C1.[K]
Synonyms:- Acetic acid, phenyl-, potassium salt
- Benzeneacetic acid, potassium salt (1:1)
- Potassium phenylacetate
- Benzeneacetic acid, potassium salt
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Found 2 products.
Benzeneacetic acid potassium salt
CAS:Controlled ProductFormula:C8H8KO2Purity:98%Color and Shape:SolidMolecular weight:175.2462Potassium phenylacetate
CAS:Controlled ProductPotassium phenylacetate is an alkanoic acid that is used to treat cancer and hyperammonemia. It is also a precursor of glycine, which is a monocarboxylic acid that can be used as a carbon source. Potassium phenylacetate has been shown to inhibit the formation of reactive oxygen species in cells by acting as a competitive inhibitor of the enzyme synthetase. It also has anti-inflammatory properties and can be used for the treatment of inflammatory diseases such as arthritis. Potassium phenylacetate is resistant to high salt, heat, and oxidizing agents, making it ideal for use in food preservation. This chemical compound has a higher resistance against growth factor deprivation than other alkanoic acids.
Formula:C8H7KO2Purity:Min. 95%Molecular weight:174.24 g/mol

