2-Cyanopyrimidine: A Key Pharmaceutical Intermediate for Advanced Synthesis
Discover the chemical versatility of 2-Cyanopyrimidine (CAS 14080-23-0) for your pharmaceutical and agrochemical projects.
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2-Cyanopyrimidine
2-Cyanopyrimidine is a vital heterocyclic compound serving as a critical building block in the synthesis of a wide array of biologically active molecules. Its unique structure makes it an indispensable component in the development pipeline for new pharmaceuticals and agrochemicals.
- Explore the role of 2-cyanopyrimidine pharmaceutical intermediate in synthesizing novel drugs.
- Learn why purchasing 2-cyanopyrimidine is crucial for agrochemical intermediates.
- Understand the significance of 2-cyanopyrimidine synthesis for creating advanced chemical entities.
- Discover the diverse 2-cyanopyrimidine applications in modern chemical research and industry.
Key Advantages
Versatile Building Block
Leverage 2-cyanopyrimidine as a versatile pharmaceutical building block to create complex molecular structures with targeted biological activities.
Enhanced Reactivity
The cyano functional group on 2-cyanopyrimidine imparts high reactivity, facilitating efficient organic synthesis and the creation of specialized chemical compounds.
Broad Application Scope
From developing antiviral and anticancer agents to formulating effective pesticides, the applications of 2-cyanopyrimidine are extensive and impactful.
Key Applications
Pharmaceutical Synthesis
As a key 2-cyanopyrimidine pharmaceutical intermediate, it is instrumental in the development of antiviral and anticancer drug synthesis, enhancing efficacy.
Agrochemical Development
Used in agrochemical intermediates, 2-cyanopyrimidine contributes to the creation of advanced herbicides and pesticides for improved crop protection.
Organic Chemistry Research
Researchers frequently utilize 2-cyanopyrimidine for its reactive sites in various organic synthesis pathways, advancing the field of heterocyclic chemistry.
Material Science Innovation
The unique properties of 2-cyanopyrimidine also find application in developing novel materials with enhanced stability and performance characteristics.