Ethyl 1-phenylpiperidine-4-carboxylate

95%

  • Product Code: 83135
  CAS:    247022-37-3
Molecular Weight: 233.31 g./mol Molecular Formula: C₁₄H₁₉NO₂
EC Number: MDL Number: MFCD21609276
Melting Point: Boiling Point: 337.1±35.0 °C(Predicted)
Density: 1.081±0.06 g/cm3(Predicted) Storage Condition: Room temperature, sealed, dry
Product Description: Ethyl 1-phenylpiperidine-4-carboxylate finds its primary application in the field of medicinal chemistry as a key intermediate in the synthesis of various pharmaceutical compounds. It is particularly valuable in the development of central nervous system (CNS) drugs, where its structure serves as a building block for creating molecules with potential therapeutic effects. Researchers utilize it to design and synthesize analogs that may exhibit analgesic, anti-inflammatory, or neuroprotective properties. Additionally, its role in the production of compounds targeting neurotransmitter systems, such as dopamine or serotonin receptors, highlights its significance in drug discovery. Beyond pharmaceuticals, it is also explored in academic research for studying chemical reactions and developing novel synthetic pathways.
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.100 10-20 days ฿9,360.00
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0.250 10-20 days ฿16,380.00
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1.000 10-20 days ฿32,760.00
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Ethyl 1-phenylpiperidine-4-carboxylate
Ethyl 1-phenylpiperidine-4-carboxylate finds its primary application in the field of medicinal chemistry as a key intermediate in the synthesis of various pharmaceutical compounds. It is particularly valuable in the development of central nervous system (CNS) drugs, where its structure serves as a building block for creating molecules with potential therapeutic effects. Researchers utilize it to design and synthesize analogs that may exhibit analgesic, anti-inflammatory, or neuroprotective properties. Additionally, its role in the production of compounds targeting neurotransmitter systems, such as dopamine or serotonin receptors, highlights its significance in drug discovery. Beyond pharmaceuticals, it is also explored in academic research for studying chemical reactions and developing novel synthetic pathways.
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