2-Bromo-3-fluoropyridin-4-ol

96%

Reagent Code: #43175
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CAS Number 1211525-92-6

science Other reagents with same CAS 1211525-92-6

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Weight 191.9858 g/mol
Formula C₅H₃BrFNO
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MDL Number MFCD18257612
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Used in pharmaceutical research as a building block for the synthesis of complex molecules, particularly in the development of drugs targeting neurological disorders and cancer. It serves as a key intermediate in the creation of compounds with potential therapeutic properties. Additionally, it is employed in agrochemical research for designing new pesticides and herbicides, leveraging its unique chemical structure to enhance efficacy. In material science, it contributes to the development of advanced organic materials with specific electronic or photonic properties. Its versatility in chemical reactions makes it valuable for exploring novel synthetic pathways in organic chemistry.

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inventory 100mg
10-20 days ฿837.00

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2-Bromo-3-fluoropyridin-4-ol
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Used in pharmaceutical research as a building block for the synthesis of complex molecules, particularly in the development of drugs targeting neurological disorders and cancer. It serves as a key intermediate in the creation of compounds with potential therapeutic properties. Additionally, it is employed in agrochemical research for designing new pesticides and herbicides, leveraging its unique chemical structure to enhance efficacy. In material science, it contributes to the development of advanced org

Used in pharmaceutical research as a building block for the synthesis of complex molecules, particularly in the development of drugs targeting neurological disorders and cancer. It serves as a key intermediate in the creation of compounds with potential therapeutic properties. Additionally, it is employed in agrochemical research for designing new pesticides and herbicides, leveraging its unique chemical structure to enhance efficacy. In material science, it contributes to the development of advanced organic materials with specific electronic or photonic properties. Its versatility in chemical reactions makes it valuable for exploring novel synthetic pathways in organic chemistry.

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