High-Purity 1-(p-Toluenesulfonyl)imidazole: Your Essential Reagent for Advanced Synthesis

Discover the superior quality of 1-(p-Toluenesulfonyl)imidazole, a critical chemical intermediate for complex organic transformations and efficient peptide coupling. As a leading manufacturer and supplier, we provide this 99% pure reagent to meet your demanding R&D and production needs. Request a quote and sample today to elevate your chemical processes.

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Key Advantages of Our 1-(p-Toluenesulfonyl)imidazole

Exceptional Purity Profile

Achieve superior reaction outcomes with our 1-(p-Toluenesulfonyl)imidazole, guaranteed to be 99% pure by HPLC, minimizing side reactions and ensuring product integrity in your sensitive organic synthesis applications.

Broad Applicability in Synthesis

From peptide coupling to the synthesis of complex heterocyclic compounds, our tosylimidazole derivative offers remarkable versatility, making it a valuable asset for pharmaceutical intermediates and advanced material development.

Reliable Supply Chain and Support

As a dedicated manufacturer and supplier in China, we ensure a stable supply of 1-(p-Toluenesulfonyl)imidazole, coupled with responsive customer service to support your procurement and technical inquiries. Buy with confidence.

Diverse Applications in Chemistry

Peptide Synthesis

Enhance your peptide coupling reactions with 1-(p-Toluenesulfonyl)imidazole, a highly effective activating agent crucial for forming amide bonds efficiently in the synthesis of peptides and peptidomimetics.

Organic Synthesis Intermediate

Leverage the reactivity of 1-tosylimidazole as a versatile intermediate in the construction of various organic molecules, including pharmaceuticals, agrochemicals, and specialty materials.

Heterocyclic Chemistry

Utilize its structural features in the synthesis of diverse heterocyclic systems, a fundamental aspect of medicinal chemistry and the development of novel compounds.

Reagent for Esterification

This compound can also be employed as a tosylating agent for alcohols, facilitating ester formation and further functionalization in multi-step syntheses.