High Purity 3,3'-Diaminobenzidine Tetrahydrochloride for Advanced Biochemical Research and Polymer Synthesis

Unlock critical insights in biochemistry and materials science with our high-grade 3,3'-Diaminobenzidine Tetrahydrochloride. An essential tool for researchers and innovators worldwide.

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Advantages You'll Gain

Uncompromising Purity

Benefit from a product with an assay of ≥99.0%, ensuring reliable and reproducible results in your sensitive assays and synthesis processes, crucial for its use as a peroxidase substrate for IHC.

Versatile Applications

From detailed visualization in immunohistochemistry to the foundational synthesis of advanced polymers, this compound offers broad utility across chemical, biochemical, and materials research, making it a versatile component for various chemical synthesis intermediates.

Reliable Global Supply

As a dedicated manufacturer and supplier from China, we guarantee dependable sourcing and timely delivery, supporting your ongoing research and production needs for essential biochemical research chemicals.

Key Applications

Biochemical Staining

Crucial for immunohistochemistry and immunoblotting, this compound acts as an excellent chromogenic substrate, enabling clear visualization in biological research, supporting the search for immunohistochemistry reagents.

Polymer Synthesis

Serves as an essential monomer in the preparation of high-performance polymer resins and synthetic fibers, contributing to the creation of advanced materials with enhanced thermal resistance, vital for polymer synthesis monomer applications.

Analytical Chemistry

Functions as a color developer in specific photometric determinations, contributing to accurate analytical measurements in various laboratory settings, a key aspect of its role as an analytical chemistry reagent.

Materials Science

Its unique chemical structure makes it a valuable component in developing specialized materials with tailored properties, supporting innovation in advanced materials development and contributing to research into high-performance polymer materials.