N-Acryloxysuccinimide: A Versatile Monomer for Polymer Synthesis and Bioconjugation

Discover the unique dual functionality of N-Acryloxysuccinimide (NAS) for advanced polymer and bioconjugation applications. As a leading chemical manufacturer and supplier, we provide high-purity NAS to meet your research and production needs.

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Key Advantages of Sourcing N-Acryloxysuccinimide

Superior Dual Functionality

N-Acryloxysuccinimide offers a unique combination of polymerizable acrylamide and reactive succinimide ester, facilitating complex material designs and supporting diverse research needs for chemical buyers.

Enhanced Hydrolytic Stability

Compared to other succinimide derivatives, the amide linkage in N-Acryloxysuccinimide provides better hydrolytic stability, making it a more robust choice for aqueous applications and a preferred chemical intermediate.

Versatile Synthesis Applications

From nanocarrier synthesis to stimuli-responsive polymer development, N-Acryloxysuccinimide is a crucial building block for researchers and manufacturers seeking advanced chemical solutions.

Diverse Applications Driven by N-Acryloxysuccinimide

Polymer Chemistry

N-Acryloxysuccinimide acts as a versatile monomer in various polymerization techniques, including RAFT polymerization, enabling the creation of polymers with tailored molecular weights and structures, essential for specialty chemical buyers.

Bioconjugation & Drug Delivery

Its ability to conjugate with amine-functionalized biomolecules makes N-Acryloxysuccinimide ideal for developing antibody-drug conjugates (ADCs) and surface modifications for drug delivery systems, a core area for pharmaceutical intermediate suppliers.

Nanomaterial Synthesis

N-Acryloxysuccinimide is instrumental in synthesizing nanogels and encapsulating enzymes, supporting advanced research in fields like diagnostics and biocatalysis, a key product for material science manufacturers.

Chromatographic Media

This compound is utilized in preparing monolithic columns for capillary electrochromatography, showcasing its utility in creating specialized separation media for analytical chemists.