(S)-2-Amino-3-(thiophen-3-yl)propanoic acid

97%

  • Product Code: 38279
  CAS:    3685-51-6
Molecular Weight: 171.22 g./mol Molecular Formula: C₇H₉NO₂S
EC Number: MDL Number: MFCD00038645
Melting Point: Boiling Point: 373.8°C at 760 mmHg
Density: Storage Condition: 2-8°C, dry and sealed away from light
Product Description: (S)-2-Amino-3-(thiophen-3-yl)propanoic acid is primarily utilized in the field of medicinal chemistry and pharmaceutical research. It serves as a key intermediate in the synthesis of various bioactive compounds, particularly those targeting neurological disorders. Its structure, which includes a thiophene ring, makes it a valuable building block for developing molecules that interact with specific receptors in the brain, potentially aiding in the treatment of conditions like epilepsy, depression, and neurodegenerative diseases. Additionally, it is explored in the design of peptide-based drugs due to its amino acid-like properties, which can enhance drug stability and bioavailability. Researchers also investigate its potential in creating novel materials for organic electronics, leveraging its conjugated system for improved conductivity and optical properties.
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.250 10-20 days ฿3,105.00
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1.000 10-20 days ฿6,210.00
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(S)-2-Amino-3-(thiophen-3-yl)propanoic acid
(S)-2-Amino-3-(thiophen-3-yl)propanoic acid is primarily utilized in the field of medicinal chemistry and pharmaceutical research. It serves as a key intermediate in the synthesis of various bioactive compounds, particularly those targeting neurological disorders. Its structure, which includes a thiophene ring, makes it a valuable building block for developing molecules that interact with specific receptors in the brain, potentially aiding in the treatment of conditions like epilepsy, depression, and neurodegenerative diseases. Additionally, it is explored in the design of peptide-based drugs due to its amino acid-like properties, which can enhance drug stability and bioavailability. Researchers also investigate its potential in creating novel materials for organic electronics, leveraging its conjugated system for improved conductivity and optical properties.
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