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Home  > Ethyl 2-fluoropyridine-3-carboxylate

AA12795

113898-56-9 | Ethyl 2-fluoropyridine-3-carboxylate

Packsize Purity Availability Price Discounted Price    Quantity
1g 96% in stock $41.00 $29.00 -   +
5g 96% in stock $121.00 $85.00 -   +
25g 96% in stock $386.00 $270.00 -   +
100g 96% in stock $1,131.00 $792.00 -   +

*All products are for research use only and not intended for human or animal use.

*All prices are in USD.

Description
Catalog Number: AA12795
Chemical Name: Ethyl 2-fluoropyridine-3-carboxylate
CAS Number: 113898-56-9
Molecular Formula: C8H8FNO2
Molecular Weight: 169.153
MDL Number: MFCD14698241
SMILES: CCOC(=O)c1cccnc1F

 

Upstream Synthesis Route
  • Ethyl 2-fluoronicotinate is a versatile compound that finds wide application in chemical synthesis. It serves as a valuable building block in the production of various pharmaceuticals, agrochemicals, and specialty chemicals due to its unique structural properties. In chemical synthesis, Ethyl 2-fluoronicotinate is commonly used as a key intermediate for the synthesis of organic compounds with diverse functionalities. One of its primary applications is in the development of new therapeutic agents and drug molecules. By introducing specific functional groups onto the fluorinated nicotinate backbone, chemists can tailor the structure of the target molecules to enhance their biological activity or improve their pharmacokinetic properties.Furthermore, Ethyl 2-fluoronicotinate is utilized in the synthesis of novel materials with advanced properties. Its incorporation into polymer chains can impart desired characteristics such as enhanced stability, improved solubility, or specific reactivity. This enables researchers to design custom materials for applications ranging from coatings and adhesives to electronics and biomedical devices.Overall, Ethyl 2-fluoronicotinate plays a crucial role in advancing the field of chemical synthesis by enabling the creation of innovative compounds that have wide-ranging applications in various industries. Its versatility and compatibility with different reaction pathways make it a valuable tool for synthetic chemists seeking to develop cutting-edge products and materials.
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