3-Bromo-5-methylpicolinonitrile: A Versatile Intermediate for Organic Synthesis and Pharmaceutical Development
Unlock complex molecular structures with this essential building block.
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3-Bromo-5-methylpicolinonitrile
As a pivotal 3-Bromo-5-methylpicolinonitrile organic synthesis intermediate, this compound serves as a critical building block in the creation of complex molecules. Its reliable structure and reactivity make it indispensable in pharmaceutical development and agrochemical applications, enabling chemists to bridge the gap between raw materials and sophisticated end products.
- Explore its use as a 3-bromo-5-methylpicolinonitrile organic synthesis intermediate, enabling the construction of intricate molecular frameworks crucial for advanced research.
- Leverage its role as a 3-bromo-5-methylpyridine-2-carbonitrile CAS 474824-78-7 precursor for novel pharmaceutical intermediate synthesis, driving innovation in drug discovery.
- Utilize its properties as a key agrochemical development precursor, contributing to the creation of effective crop protection solutions.
- Benefit from its classification as a white solid chemical intermediate, ensuring stability and ease of handling in various laboratory and industrial settings.
Key Advantages
High Purity for Reliable Synthesis
Achieve consistent results in your reactions with a high purity chemical intermediate, minimizing side products and ensuring the integrity of your synthesized compounds.
Versatile Building Block
As a key organic chemistry building block, its unique structure allows participation in diverse reactions, making it adaptable for various synthetic pathways.
Facilitates Complex Molecular Design
Its utility in transition metal catalyzed coupling reactions, such as Suzuki-Miyaura, allows for precise carbon-carbon bond formation, essential for designing advanced molecules.
Key Applications
Pharmaceutical Synthesis
Serves as a critical component in the synthesis of active pharmaceutical ingredients (APIs), leveraging its structure for targeted therapeutic effects.
Agrochemical Development
Acts as a precursor in the creation of pesticides and herbicides, contributing to modern agricultural advancements.
Research and Development
An indispensable tool in organic chemistry research, enabling the exploration of novel chemical entities and their properties.
Fine Chemical Production
Used in the manufacturing of fine chemicals, demonstrating its broad applicability across various chemical industries.