METHYL 5-BROMO-6-FLUORO-1H-INDAZOLE-4-CARBOXYLATE

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Reagent Code: #49025
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CAS Number 1037841-25-0

science Other reagents with same CAS 1037841-25-0

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Weight 273.0585 g/mol
Formula C₉H₆BrFN₂O₂
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description Product Description

This compound is primarily utilized in pharmaceutical research and development as a key intermediate in the synthesis of more complex molecules. Its structure, featuring both bromo and fluoro substituents, makes it a valuable building block for creating potential drug candidates, particularly in the fields of oncology and neurology. Researchers leverage its reactivity to modify and optimize drug-like properties, such as potency, selectivity, and bioavailability. Additionally, it may be employed in the development of small molecule inhibitors targeting specific enzymes or receptors involved in disease pathways. Its applications are largely confined to laboratory settings, where it contributes to the discovery of novel therapeutic agents.

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Size Availability Unit Price Quantity
inventory 1g
10-20 days ฿20,718.00
inventory 250mg
10-20 days ฿5,985.00
inventory 100mg
10-20 days ฿2,700.00

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METHYL 5-BROMO-6-FLUORO-1H-INDAZOLE-4-CARBOXYLATE
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This compound is primarily utilized in pharmaceutical research and development as a key intermediate in the synthesis of more complex molecules. Its structure, featuring both bromo and fluoro substituents, makes it a valuable building block for creating potential drug candidates, particularly in the fields of oncology and neurology. Researchers leverage its reactivity to modify and optimize drug-like properties, such as potency, selectivity, and bioavailability. Additionally, it may be employed in the de

This compound is primarily utilized in pharmaceutical research and development as a key intermediate in the synthesis of more complex molecules. Its structure, featuring both bromo and fluoro substituents, makes it a valuable building block for creating potential drug candidates, particularly in the fields of oncology and neurology. Researchers leverage its reactivity to modify and optimize drug-like properties, such as potency, selectivity, and bioavailability. Additionally, it may be employed in the development of small molecule inhibitors targeting specific enzymes or receptors involved in disease pathways. Its applications are largely confined to laboratory settings, where it contributes to the discovery of novel therapeutic agents.

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