1-(4-Nitrobenzenesulfonyl)-1H-1,2,4-Triazole: A Reliable Coupling Reagent for Organic Synthesis

Discover the power of 1-(4-Nitrobenzenesulfonyl)-1H-1,2,4-Triazole, a premier coupling reagent for demanding organic synthesis applications. As a leading manufacturer and supplier in China, we offer this high-purity chemical to drive your research and production forward. Get a competitive price and reliable supply.

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Key Advantages of Our Coupling Reagent

Superior Purity for Consistent Results

Our 1-(4-Nitrobenzenesulfonyl)-1H-1,2,4-Triazole boasts u226598% HPLC purity, ensuring reproducible and high-quality outcomes in your sensitive organic synthesis processes. Trust our commitment to quality as your reliable supplier.

Efficient Amide Bond Formation

This chemical is a highly effective coupling reagent, specifically designed to promote the formation of amide bonds with excellent efficiency. Its performance makes it a sought-after product for researchers and formulators.

Bulk Supply and Contract Manufacturing Capabilities

We offer flexible solutions, from lab-scale quantities to bulk industrial supply, and are equipped for contract manufacturing. As your dedicated partner, we ensure a stable supply chain for this vital organic synthesis component.

Core Application Areas

Amide Bond Synthesis

The primary application of 1-(4-Nitrobenzenesulfonyl)-1H-1,2,4-Triazole is in the efficient formation of amide bonds, a critical reaction in organic chemistry and the synthesis of various chemical compounds.

Pharmaceutical Intermediates

As a key reagent in complex synthesis, it serves as a valuable intermediate in the production of active pharmaceutical ingredients (APIs) and other critical pharmaceutical compounds.

Fine Chemical Manufacturing

Manufacturers in the fine chemical sector rely on this reagent for its predictable performance in creating complex organic molecules, supporting diverse industrial applications.

Research and Development

Essential for R&D laboratories, this coupling reagent enables scientists to explore new synthetic routes and develop novel compounds with high efficiency.