3-(5-Fluoropyridin-2-yl)acrylic acid hydrochloride

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Reagent Code: #117465
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CAS Number 917760-91-9

science Other reagents with same CAS 917760-91-9

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 203.6 g/mol
Formula C₈H₇ClFNO₂
inventory_2 Storage & Handling
Storage room temperature, dry

description Product Description

This compound is primarily utilized in pharmaceutical research and development, particularly in the synthesis of novel drug candidates. Its structure, featuring a fluoropyridine moiety, makes it a valuable intermediate in the creation of biologically active molecules. It is often employed in the design of compounds targeting specific enzymes or receptors, especially in the development of anti-inflammatory, anticancer, or central nervous system (CNS) drugs. Additionally, its reactivity allows for further functionalization, enabling the production of diverse chemical libraries for high-throughput screening in drug discovery. Its application extends to the study of structure-activity relationships (SAR) to optimize the efficacy and selectivity of potential therapeutic agents.

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Size Availability Unit Price Quantity
inventory 100mg
10-20 days ฿3,024.00
inventory 25mg
10-20 days ฿1,395.00

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3-(5-Fluoropyridin-2-yl)acrylic acid hydrochloride
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This compound is primarily utilized in pharmaceutical research and development, particularly in the synthesis of novel drug candidates. Its structure, featuring a fluoropyridine moiety, makes it a valuable intermediate in the creation of biologically active molecules. It is often employed in the design of compounds targeting specific enzymes or receptors, especially in the development of anti-inflammatory, anticancer, or central nervous system (CNS) drugs. Additionally, its reactivity allows for further

This compound is primarily utilized in pharmaceutical research and development, particularly in the synthesis of novel drug candidates. Its structure, featuring a fluoropyridine moiety, makes it a valuable intermediate in the creation of biologically active molecules. It is often employed in the design of compounds targeting specific enzymes or receptors, especially in the development of anti-inflammatory, anticancer, or central nervous system (CNS) drugs. Additionally, its reactivity allows for further functionalization, enabling the production of diverse chemical libraries for high-throughput screening in drug discovery. Its application extends to the study of structure-activity relationships (SAR) to optimize the efficacy and selectivity of potential therapeutic agents.

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