Ethyl 6-phenylpicolinate
95%
- Product Code: 53262
CAS:
107771-78-8
Molecular Weight: | 227.2585 g./mol | Molecular Formula: | C₁₄H₁₃NO₂ |
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EC Number: | MDL Number: | MFCD13181703 | |
Melting Point: | Boiling Point: | ||
Density: | Storage Condition: | room temperature |
Product Description:
Ethyl 6-phenylpicolinate finds application primarily in the field of organic synthesis, where it serves as a versatile intermediate for the production of various pharmaceuticals and agrochemicals. Its structure, featuring both an ester and a phenyl group, makes it a valuable building block in the synthesis of complex molecules.
In medicinal chemistry, it is often utilized to develop compounds with potential therapeutic properties, particularly in the creation of inhibitors or modulators for specific biological targets. The phenylpicolinate moiety can interact with enzymes or receptors, making it useful in drug discovery programs.
Additionally, it is employed in the synthesis of ligands for catalysis, particularly in asymmetric synthesis, where it can help create chiral environments for enantioselective reactions. Its application extends to material science, where it can be used to design organic materials with specific electronic or optical properties. Overall, its versatility makes it a key component in advanced chemical research and industrial applications.
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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0.250 | 10-20 days | ฿1,170.00 |
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Ethyl 6-phenylpicolinate
Ethyl 6-phenylpicolinate finds application primarily in the field of organic synthesis, where it serves as a versatile intermediate for the production of various pharmaceuticals and agrochemicals. Its structure, featuring both an ester and a phenyl group, makes it a valuable building block in the synthesis of complex molecules.
In medicinal chemistry, it is often utilized to develop compounds with potential therapeutic properties, particularly in the creation of inhibitors or modulators for specific biological targets. The phenylpicolinate moiety can interact with enzymes or receptors, making it useful in drug discovery programs.
Additionally, it is employed in the synthesis of ligands for catalysis, particularly in asymmetric synthesis, where it can help create chiral environments for enantioselective reactions. Its application extends to material science, where it can be used to design organic materials with specific electronic or optical properties. Overall, its versatility makes it a key component in advanced chemical research and industrial applications.
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