Sodium Cyanoborohydride: Your Go-To Selective Reducing Agent for Complex Synthesis

Discover the precision and efficiency of Sodium Cyanoborohydride, a critical reagent for organic chemists. We are a leading manufacturer and supplier in China, offering high-purity NaBH3CN for your advanced synthesis needs. Explore its applications and secure your supply today.

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Key Advantages of Our Sodium Cyanoborohydride

Enhanced Selectivity

Our Sodium Cyanoborohydride, a sought-after selective reducing agent, offers superior performance in reductive amination. This chemical synthesis reagent allows for precise control, leading to higher yields and purer products in your manufacturing processes.

Process Efficiency

Streamline your organic synthesis workflow. The mild reducing properties of NaBH3CN make it perfect for reactions in neutral or slightly acidic conditions, contributing to more efficient and safer chemical manufacturing. Purchase from our reliable Chinese supplier for consistent results.

Versatile Applications

From pharmaceutical intermediates to cosmetic raw materials, Sodium Cyanoborohydride proves invaluable. As a leading manufacturer, we ensure our product meets diverse application requirements, including delicate processes like peptide synthesis.

Diverse Applications of Sodium Cyanoborohydride

Reductive Amination

A primary application where Sodium Cyanoborohydride enables the efficient conversion of carbonyl compounds and amines to secondary and tertiary amines. This is a critical reaction for synthesizing many pharmaceutical building blocks.

Peptide Synthesis

Used in the modification and synthesis of peptides, contributing to the development of advanced therapeutics. Sourcing high-grade NaBH3CN from a reputable supplier is key here.

ADC Development

Valuable in Antibody-Drug Conjugate (ADC) development for specific chemical modifications. Trust our quality when you buy this essential component.

General Organic Synthesis

Beyond specific applications, NaBH3CN serves as a general reducing agent in numerous organic synthesis pathways, offering controlled reduction for various functional groups.