(6-Chloro-3-fluoropyridin-2-yl)methanamine
95%
- Product Code: 55096
CAS:
1256804-79-1
Molecular Weight: | 160.5766 g./mol | Molecular Formula: | C₆H₆ClFN₂ |
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Density: | Storage Condition: | room temperature |
Product Description:
This chemical is primarily utilized in the development of pharmaceuticals, particularly as a key intermediate in the synthesis of active pharmaceutical ingredients (APIs). Its structure, featuring both chloro and fluoro substituents on the pyridine ring, makes it a valuable building block for creating compounds with potential therapeutic properties. It is often employed in the research and production of drugs targeting neurological disorders, such as epilepsy or neurodegenerative diseases, due to its ability to interact with specific biological receptors. Additionally, its unique chemical properties make it suitable for use in agrochemical research, where it may be incorporated into the design of novel pesticides or herbicides. The compound's versatility also extends to material science, where it can be used in the synthesis of advanced organic materials with specific electronic or optical characteristics.
Sizes / Availability / Pricing:
Size (g) | Availability | Price | Quantity |
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0.100 | 10-20 days | $467.58 |
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(6-Chloro-3-fluoropyridin-2-yl)methanamine
This chemical is primarily utilized in the development of pharmaceuticals, particularly as a key intermediate in the synthesis of active pharmaceutical ingredients (APIs). Its structure, featuring both chloro and fluoro substituents on the pyridine ring, makes it a valuable building block for creating compounds with potential therapeutic properties. It is often employed in the research and production of drugs targeting neurological disorders, such as epilepsy or neurodegenerative diseases, due to its ability to interact with specific biological receptors. Additionally, its unique chemical properties make it suitable for use in agrochemical research, where it may be incorporated into the design of novel pesticides or herbicides. The compound's versatility also extends to material science, where it can be used in the synthesis of advanced organic materials with specific electronic or optical characteristics.
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