2-Bromo-6-(2-Methyl-1,3-Dioxolan-2-yl)Pyridine
98%
Reagent
Code: #60086
CAS Number
49669-14-9
blur_circular Chemical Specifications
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Molecular Information
Weight
244.087 g/mol
Formula
C₉H₁₀BrNO₂
thermostat
Physical Properties
Boiling Point
322.7ºC at 760 mmHg
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Storage & Handling
Density
1.499g/cm3
Storage
2~8℃
description Product Description
This chemical is primarily utilized in organic synthesis as a versatile intermediate. It is commonly employed in the construction of complex molecules, particularly in the pharmaceutical industry, where it serves as a building block for the development of active pharmaceutical ingredients (APIs). Its structure, featuring a bromine atom and a dioxolane group, makes it suitable for various coupling reactions, such as Suzuki or Heck reactions, which are essential for creating carbon-carbon bonds. Additionally, it is used in the synthesis of agrochemicals and fine chemicals, where its reactive sites allow for further functionalization to achieve desired properties in the final product. Its application extends to materials science, where it can be incorporated into the design of advanced materials with specific electronic or structural characteristics.
format_list_bulleted Product Specification
Test Parameter | Specification |
---|---|
Purity | 98-100 |
Appearance | Off-white crystal |
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2-Bromo-6-(2-Methyl-1,3-Dioxolan-2-yl)Pyridine
This chemical is primarily utilized in organic synthesis as a versatile intermediate. It is commonly employed in the construction of complex molecules, particularly in the pharmaceutical industry, where it serves as a building block for the development of active pharmaceutical ingredients (APIs). Its structure, featuring a bromine atom and a dioxolane group, makes it suitable for various coupling reactions, such as Suzuki or Heck reactions, which are essential for creating carbon-carbon bonds. Additionally, it is used in the synthesis of agrochemicals and fine chemicals, where its reactive sites allow for further functionalization to achieve desired properties in the final product. Its application extends to materials science, where it can be incorporated into the design of advanced materials with specific electronic or structural characteristics.
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