2-Ethoxy-3-iodopyridine
97%
Reagent
Code: #116030
CAS Number
766557-60-2
blur_circular Chemical Specifications
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Molecular Information
Weight
249.05 g/mol
Formula
C₇H₈INO
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Registry Numbers
MDL Number
MFCD00234318
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Physical Properties
Boiling Point
255.3°C at 760 mmHg
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Storage & Handling
Storage
Room temperature, away from light, stored in an inert gas
description Product Description
2-Ethoxy-3-iodopyridine is primarily utilized in organic synthesis as a versatile building block for the preparation of complex molecules. It serves as a key intermediate in the development of pharmaceuticals, particularly in the synthesis of compounds with potential therapeutic activities. The iodine atom in the molecule makes it a valuable substrate for cross-coupling reactions, such as Suzuki or Sonogashira couplings, enabling the formation of carbon-carbon bonds. Additionally, its ethoxy group can be modified or removed, offering flexibility in designing target molecules. This compound is also employed in the study of heterocyclic chemistry, aiding in the exploration of new chemical reactions and pathways. Its applications extend to material science, where it contributes to the synthesis of advanced organic materials with specific electronic or optical properties.
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2-Ethoxy-3-iodopyridine
2-Ethoxy-3-iodopyridine is primarily utilized in organic synthesis as a versatile building block for the preparation of complex molecules. It serves as a key intermediate in the development of pharmaceuticals, particularly in the synthesis of compounds with potential therapeutic activities. The iodine atom in the molecule makes it a valuable substrate for cross-coupling reactions, such as Suzuki or Sonogashira couplings, enabling the formation of carbon-carbon bonds. Additionally, its ethoxy group can be modified or removed, offering flexibility in designing target molecules. This compound is also employed in the study of heterocyclic chemistry, aiding in the exploration of new chemical reactions and pathways. Its applications extend to material science, where it contributes to the synthesis of advanced organic materials with specific electronic or optical properties.
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