Diphenylphosphoryl Azide (DPPA): A Versatile Reagent for Peptide Synthesis and Organic Chemistry

Discover the essential role of DPPA in modern organic synthesis and peptide bond formation.

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Advantages Offered

Efficient Peptide Bond Formation

DPPA acts as a highly efficient peptide coupling agent, ensuring the formation of stable peptide bonds with minimal side reactions, contributing to higher product purity and yield in complex peptide synthesis.

Versatile Acyl Azide Formation

The ability of DPPA for acyl azide formation is critical for the preparation of various organic compounds, including its use in the Curtius reaction, expanding its utility in diverse synthetic strategies.

Streamlined Organic Synthesis

As a crucial DPPA synthesis reagent, it simplifies complex synthetic pathways, making it a valuable tool for chemists requiring reliable and effective solutions for organic synthesis.

Key Applications

Peptide Synthesis

DPPA is a preferred peptide coupling agent DPPA in the synthesis of peptides, enabling the efficient linkage of amino acids to create desired peptide sequences.

Organic Synthesis

Its role as a versatile organic synthesis reagent makes DPPA essential for a wide range of chemical transformations and the creation of novel organic molecules.

Acyl Azide Preparation

DPPA is instrumental in the preparation of acyl azides, key intermediates for reactions like the Curtius rearrangement, demonstrating its importance in modern organic chemistry.

Pharmaceutical Intermediates

As a critical organic synthesis reagent, DPPA is used in the production of various pharmaceutical intermediates, supporting drug discovery and development efforts.

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Global Experience

With 20 years of R&D, manufacturing, and sales experience, we proudly serve clients across 60 countries and regions worldwide.

Advanced Facilities

Our in-house R&D laboratory, pilot platform, and large-scale production workshop are equipped to meet the audit requirements of global customers.

Seamless Scalability

We facilitate a perfect transition from small-scale lab requirements (grams) to full commercialization (hundreds of tons).