1-(5-Nitropyridin-2-yl)ethanone

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Reagent Code: #39511
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CAS Number 31557-75-2

science Other reagents with same CAS 31557-75-2

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Weight 166.1400 g/mol
Formula C₇H₆N₂O₃
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MDL Number MFCD10697712
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This compound is primarily utilized in organic synthesis as an intermediate for the production of more complex chemical structures. It is often employed in the development of pharmaceuticals, particularly in the synthesis of active pharmaceutical ingredients (APIs) that require a nitropyridine moiety. Additionally, it serves as a building block in the creation of agrochemicals, where its nitro group can be further modified to enhance biological activity. In research settings, it is used to study reaction mechanisms and to develop new synthetic pathways for heterocyclic compounds. Its unique structure makes it valuable in the design of ligands for catalytic systems and in material science for the development of functionalized materials.

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inventory 100mg
10-20 days ฿3,393.00

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1-(5-Nitropyridin-2-yl)ethanone
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This compound is primarily utilized in organic synthesis as an intermediate for the production of more complex chemical structures. It is often employed in the development of pharmaceuticals, particularly in the synthesis of active pharmaceutical ingredients (APIs) that require a nitropyridine moiety. Additionally, it serves as a building block in the creation of agrochemicals, where its nitro group can be further modified to enhance biological activity. In research settings, it is used to study reaction

This compound is primarily utilized in organic synthesis as an intermediate for the production of more complex chemical structures. It is often employed in the development of pharmaceuticals, particularly in the synthesis of active pharmaceutical ingredients (APIs) that require a nitropyridine moiety. Additionally, it serves as a building block in the creation of agrochemicals, where its nitro group can be further modified to enhance biological activity. In research settings, it is used to study reaction mechanisms and to develop new synthetic pathways for heterocyclic compounds. Its unique structure makes it valuable in the design of ligands for catalytic systems and in material science for the development of functionalized materials.

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