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(S)-3-hydroxy-gamma-butyrolactone cas 7331-52-4

(S)-3-hydroxy-gamma-butyrolactone cas 7331-52-4

Short Description:

CAS No.:7331-52-4
Purity:99%
Place of Origin:Sichuan, China
Other Names:(S)-3-hydroxy-gamma-butyrolactone
MF:C4H6O3
EINECS No.:434-990-4
Appearance:Liquid
Application:Organic Intermediate
Minimum order quantity:5kilogram

Price:$100 – $182


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(S)-3-hydroxy-gamma-butyrolactone, also known as (S)-3-hydroxybutyrolactone, is a chemical compound with the molecular formula C4H6O3. It is a chiral molecule, with the (S)-enantiomer being the biologically active form. This compound is a lactone, which is a cyclic ester, and it is commonly used as a precursor in the synthesis of pharmaceuticals and fine chemicals.

(S)-3-hydroxy-gamma-butyrolactone

Physical and Chemical Properties of (S)-3-hydroxy-gamma-butyrolactone:

  • Molecular Formula: C4H6O3
  • Molecular Weight: 102.09 g/mol
  • Appearance: Colorless to pale yellow liquid
  • Odor: Characteristic odor
  • Melting Point: -44°C
  • Boiling Point: 180-185°C
  • Solubility: Soluble in water, ethanol, and ether
  • Density: 1.12 g/cm3
  • Refractive Index: 1.435

(S)-3-hydroxy-gamma-butyrolactone is an important intermediate in the synthesis of various pharmaceuticals, including antiviral and antibacterial agents. It is also used in the production of agrochemicals and as a building block in organic synthesis. Additionally, (S)-3-hydroxy-gamma-butyrolactone has potential applications in the field of biotechnology, particularly in the production of biodegradable polymers and as a precursor for the synthesis of bioactive compounds.

The (S)-enantiomer of 3-hydroxy-gamma-butyrolactone is of particular interest due to its biological activity and potential therapeutic applications. Research into its pharmacological properties and potential use in drug development is ongoing, making it a compound of interest in the pharmaceutical industry.

In conclusion, (S)-3-hydroxy-gamma-butyrolactone is a versatile compound with significant importance in pharmaceutical, agrochemical, and biotechnological applications. Its unique chemical and biological properties make it a valuable building block for the synthesis of various compounds with potential therapeutic and industrial significance.


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