3-Bromo-5-chloropicolinonitrile: Properties, Synthesis, and Applications in Organic Chemistry
Discover the essential properties, diverse applications, and strategic sourcing of 3-Bromo-5-chloropicolinonitrile, a key intermediate powering innovation in chemical synthesis.
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3-Bromo-5-chloropicolinonitrile
As a pivotal intermediate in organic synthesis, 3-Bromo-5-chloropicolinonitrile (CAS: 760207-83-8) serves as an indispensable building block for complex chemical structures. We, as a reliable supplier in China, offer this compound with an exceptional assay of ≥99.0%, ensuring high purity for demanding applications. Its unique molecular structure, featuring reactive halogen substituents and a nitrile group, makes it highly versatile for various synthetic pathways.
- Leverage 3-Bromo-5-chloropicolinonitrile CAS 760207-83-8 for advanced organic synthesis projects, benefiting from its role as a key intermediate.
- Explore its utility in creating pyridine-based scaffolds synthesis, crucial for pharmaceutical development.
- Utilize its properties for agrochemical synthesis building blocks, contributing to effective crop protection solutions.
- Benefit from our expertise as a fine chemical manufacturing China facility, ensuring consistent quality and supply.
Advantages Offered
Exceptional Purity
With an assay of ≥99.0%, this compound guarantees reliable performance in sensitive reactions, ensuring the integrity of your final products and supporting precise organic synthesis intermediate applications.
Synthetic Versatility
The combination of bromine, chlorine, and nitrile groups provides significant synthetic flexibility, enabling a wide range of chemical transformations crucial for developing novel compounds and supporting pyridine chemistry applications.
Strategic Sourcing
Sourcing from China offers a strategic advantage, providing access to high-quality chemical building blocks with efficient production capabilities, vital for meeting the demands of pharmaceutical building blocks production.
Key Applications
Pharmaceutical Synthesis
As a key intermediate, it is used in the synthesis of active pharmaceutical ingredients (APIs) that require pyridine-based scaffolds, contributing to the development of new treatments and supporting pharmaceutical building blocks.
Agrochemical Development
Its reactive nature makes it an excellent precursor for agrochemicals, aiding in the creation of effective pesticides and crop protection agents, aligning with needs in agrochemical synthesis.
Specialty Chemical Production
The compound serves as a valuable building block in the creation of various specialty chemicals, offering a reactive core for complex organic synthesis.
Research and Development
Essential for R&D, its well-defined properties and reactivity make it a preferred choice for exploring new chemical reactions and discovering novel compounds in academic and industrial settings.