Diaminomaleonitrile (DAMN): A Versatile Intermediate for Pharmaceuticals, Agrochemicals, and Dyes

Discover the power of Diaminomaleonitrile (DAMN), CAS 1187-42-4, a high-purity organic synthesis intermediate essential for advanced chemical manufacturing. As a leading manufacturer and supplier, we provide reliable DAMN for your critical applications.

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Advantages of Sourcing Diaminomaleonitrile

Exceptional Purity and Quality Assurance

Our Diaminomaleonitrile (CAS 1187-42-4) consistently meets stringent quality standards, with a purity of ≥98.5%. This ensures reliable performance and optimal results in your complex organic synthesis and formulation processes. Rely on us as your consistent supplier.

Broad Spectrum of Chemical Applications

Diaminomaleonitrile is a key intermediate for synthesizing diverse heterocyclic compounds, vital for pharmaceuticals, pesticides, and dyes. Its versatility allows for innovation across multiple sectors. Purchase DAMN for your research and production needs.

Reliable Supply Chain from a Leading Chinese Manufacturer

Leverage our robust manufacturing capabilities as a leading Diaminomaleonitrile supplier in China. We ensure stable availability and competitive pricing, facilitating cost-effective procurement for your global operations.

Key Application Areas for Diaminomaleonitrile

Pharmaceutical Intermediates

Diaminomaleonitrile is crucial for synthesizing various pharmaceutical intermediates, enabling the development of new therapeutic agents. Partner with a reliable manufacturer for your API synthesis needs.

Agrochemical Synthesis

As a precursor for pesticides, DAMN plays a vital role in agricultural chemistry. Discover how to buy high-purity DAMN to enhance crop protection solutions.

Dye and Pigment Manufacturing

DAMN is a key raw material for polyester disperse dyes and other pigments, contributing vibrant colors to textiles and materials. Source your dye intermediates from a dependable supplier.

Heterocyclic Compound Synthesis

The inherent structure of Diaminomaleonitrile makes it an excellent starting material for a vast array of heterocyclic compounds, supporting advanced organic synthesis research and development.