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Product Line: Pharmaceutical Chemicals

2-Amino-5-iodopyridine

CAS 20511-12-0

Molecular structure of 2-Amino-5-iodopyridine

CAS · 20511-12-0

01

Product Overview

2-Amino-5-iodopyridine is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.

02

Product Specifications

Appearance Light yellow solid
Assay (GC) 98% min
Water 0.5% max
03

Applications

2-Amino-5-iodopyridine is primarily used as an intermediate in organic synthesis, pharmaceuticals, and agrochemical research. Its iodine and amino functionalities make it highly versatile for cross-coupling reactions, such as Suzuki or Sonogashira couplings, enabling the construction of complex heterocyclic and aromatic compounds. It is commonly employed in the synthesis of bioactive molecules, including kinase inhibitors, antiviral agents, and other pharmaceutical candidates. The compound is also used in the preparation of dyes, ligands for coordination chemistry, and functionalized heterocycles in material science, supporting both industrial applications and academic research.

04

Benefits

The benefits of 2-Amino-5-iodopyridine include its high reactivity, selectivity in functionalization, and chemical stability. The iodine atom allows efficient halogen-based coupling reactions, while the amino group enables further derivatization and introduction of diverse substituents. Its structural features facilitate regioselective synthesis and high-yield transformations, making it suitable for multi-step chemical pathways. Additionally, the compound is stable under standard storage conditions, easy to handle, and compatible with a variety of solvents and reaction conditions, ensuring reproducible and efficient results in both laboratory and industrial settings.

05

Conclusion

2-Amino-5-iodopyridine is a valuable intermediate for pharmaceutical synthesis, agrochemical development, and material science research. Its reactive iodine and amino groups provide versatile functionalization options, enabling efficient construction of complex molecules. These properties make it a reliable and practical building block for advanced organic synthesis and chemical research.

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