4-Methyl-quinoline-6-carbonitrile: A Versatile Heterocyclic Building Block
Discover the potential of this key organic compound for your advanced chemical synthesis needs.
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4-Methyl-quinoline-6-carbonitrile
This compound, identified by CAS 924962-08-3, is a crucial heterocyclic building block with broad applications in scientific research. Its unique structure makes it valuable for developing new pharmaceuticals, agrochemicals, and advanced materials.
- Explore the versatility of 4-methylquinoline-6-carbonitrile in advanced organic synthesis, enabling the creation of complex molecular architectures.
- Source high-quality 4-methylquinoline-6-carbonitrile from reliable suppliers for your research and development projects.
- Understand the chemical intermediates price trends and availability for this key compound.
- Leverage 4-methylquinoline-6-carbonitrile applications in creating novel compounds for the pharmaceutical and agrochemical industries.
Key Advantages
Chemical Versatility
As a 4-methylquinoline-6-carbonitrile building block, it offers exceptional versatility for custom synthesis and the exploration of novel chemical pathways.
Research Enablement
Facilitate groundbreaking research by utilizing 4-methylquinoline-6-carbonitrile in the development of new active pharmaceutical ingredients and functional materials.
Supply Chain Reliability
Access a stable supply of 4-methylquinoline-6-carbonitrile from reputable manufacturers, ensuring your projects remain on track.
Key Applications
Pharmaceutical Development
Utilize 4-methylquinoline-6-carbonitrile in the synthesis of potential drug candidates, contributing to advancements in medicinal chemistry.
Agrochemical Innovation
Explore the use of this heterocyclic compound in developing new pesticides and herbicides, addressing agricultural needs.
Materials Science Advancement
Incorporate 4-methylquinoline-6-carbonitrile into new materials with tailored electronic or optical properties.
Organic Synthesis
Employ 4-methylquinoline-6-carbonitrile as a key intermediate in complex organic reactions and multi-step syntheses.