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Product Line: Pharmaceutical Chemicals

N-Carbethoxyphthalimide

CAS 22509-74-6

Molecular structure of N-Carbethoxyphthalimide

CAS · 22509-74-6

01

Product Overview

N-Carbethoxyphthalimide is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.

02

Product Specifications

Appearance Off-white to white crystalline powder
Purity (HPLC) 97.0% min
Melting Point 81.0℃ - 91.0℃
03

Applications

N-Carbethoxyphthalimide is a valuable intermediate widely used in organic synthesis and pharmaceutical research. It is primarily employed as a reagent for introducing protective groups, particularly in peptide synthesis, where it serves as a mild and effective carbethoxy donor. Its reactivity makes it suitable for acylation reactions, enabling the modification of amines, amino acids, and related compounds. In medicinal chemistry, it acts as a key building block for synthesizing drug candidates and bioactive molecules. Beyond pharmaceuticals, N-carbethoxyphthalimide is also used in the preparation of specialty chemicals, fine organic intermediates, and functional materials, reflecting its versatility in both research and industrial applications.

04

Benefits

The benefits of N-carbethoxyphthalimide lie in its stability, selectivity, and efficiency in protecting functional groups. It provides reliable protection for amino groups under mild reaction conditions, which helps preserve sensitive molecular structures during multi-step syntheses. Its predictable reactivity minimizes side reactions, ensuring higher yields and improved product purity. The compound is also compatible with a variety of solvents and substrates, making it adaptable to different synthetic pathways. For researchers and manufacturers, this translates into greater flexibility, reproducibility, and cost-effectiveness in chemical development processes.

05

Conclusion

In summary, N-carbethoxyphthalimide is an important synthetic reagent with applications in peptide chemistry, pharmaceutical research, and fine chemical synthesis. Its benefits include stability, selective reactivity, and efficiency in functional group protection, which collectively enhance synthetic reliability and yield. By combining practical utility with chemical versatility, N-carbethoxyphthalimide continues to be a useful tool in advancing organic synthesis and the development of complex bioactive compounds.

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