2,3-Diaminopyrazine CAS 13134-31-1: A Versatile Intermediate for Fine Chemicals and Pharmaceutical Synthesis
Discover the essential properties and applications of 2,3-Diaminopyrazine, a crucial building block in chemical innovation.
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2,3-Diaminopyrazine
This high-purity compound serves as a vital synthesis material intermediate, underpinning advancements in fine chemicals and pharmaceutical research. Its consistent quality ensures reliable outcomes in complex chemical processes.
- Explore the detailed chemical properties of 2,3-Diaminopyrazine, including its molecular formula C4H6N4 and molecular weight of 110.12, critical for precise synthesis planning.
- Source high purity 2,3-Diaminopyrazine for your research and development needs, ensuring the integrity of your chemical reactions.
- Learn about the CAS 13134-31-1 applications, highlighting its utility as a key building block in advanced organic synthesis pathways.
- Investigate the competitive bulk 2,3-Diaminopyrazine price from trusted suppliers, optimizing your procurement strategy for material intermediates.
Key Advantages
Reliable Purity Standards
Achieve consistent results in your synthetic procedures with our 2,3-Diaminopyrazine, guaranteed to meet stringent purity standards, making it an ideal choice for pharmaceutical intermediate synthesis.
Versatile Chemical Building Block
Utilize 2,3-Diaminopyrazine as a fundamental component in a wide array of organic synthesis projects, leveraging its reactivity for innovative chemical compound development.
Cost-Effective Sourcing
Benefit from competitive bulk 2,3-Diaminopyrazine price options, facilitating efficient and economical procurement for industrial and research applications.
Key Applications
Fine Chemical Synthesis
2,3-Diaminopyrazine is instrumental as a synthesis material intermediate, enabling the creation of diverse fine chemicals with specialized properties.
Pharmaceutical Development
Its role as a pharmaceutical intermediate makes it a critical component in the research and manufacturing of various drug compounds.
Organic Chemistry Research
Researchers leverage the unique structure of 2,3-Diaminopyrazine for novel organic synthesis pathways and the development of new molecules.
Material Science Innovation
The compound's potential in creating advanced materials highlights its broader utility beyond traditional chemical sectors.