CAS · 35486-42-1
Product Overview
2-Amino-3,5-dibromopyridine丨35486-42-1 is a halogenated pyridine derivative widely used as a chemical intermediate in pharmaceuticals, agrochemicals, and material sciences. Its bromine-substituted structure enhances its reactivity, making it valuable for various synthetic applications.
Product Specifications
| Property | Specification |
|---|---|
| Appearance | Off White to Light Yellow Solid |
| Assay (GC) | 99% Min |
| Water | 0.5% Max |
Applications
1. Pharmaceutical Industry
● Drug Synthesis Intermediate:
Used in the development of antiviral, anticancer, and anti-inflammatory drugs.
● Heterocyclic Compound Synthesis:
A key building block for bioactive molecules and functional materials.
2. Agrochemical Industry
● Pesticide and Herbicide Development:
Used in the synthesis of crop protection agents such as fungicides and insecticides.
3. Organic and Material Chemistry
● Specialty Chemical Manufacturing:
Applied in the production of functionalized pyridine derivatives for advanced materials.
● Dye and Pigment Synthesis:
Used in the development of colorants and high-performance coatings.
4. Research and Development
● Medicinal Chemistry Studies:
Investigated for its role in new therapeutic compound formulations.
● Catalyst Precursor:
Used in catalytic processes for fine chemical synthesis.
Benefits
1. High Reactivity for Synthetic Applications
● The bromine atoms enhance electrophilic substitution, making it a valuable precursor for complex molecules.
2. Versatile in Pharmaceutical and Agrochemical Industries
● Supports the development of targeted bioactive compounds with improved efficacy.
3. Structural Flexibility
● The amino and bromine groups provide multiple functionalization options for diverse chemical transformations.
4. Useful in Advanced Material Development
● Plays a role in creating high-performance dyes, coatings, and electronic materials.
Conclusion
2-Amino-3,5-dibromopyridine丨35486-42-1 is a highly valuable intermediate used in pharmaceuticals, agrochemicals, dyes, and advanced materials. Its halogenated pyridine structure provides reactivity, versatility, and functionalization potential, making it essential for chemical synthesis and industrial applications.
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