Tetrapropylammonium Bromide (CAS 1941-30-6): Your Premier Phase Transfer Catalyst Supplier

Discover the essential properties and diverse applications of Tetrapropylammonium Bromide. As a leading manufacturer and supplier, we provide high-purity TPAB for optimizing your chemical synthesis and formulation needs. Get a competitive quote for your bulk purchase today!

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Key Advantages of Sourcing Our Tetrapropylammonium Bromide

Efficient Phase Transfer Catalysis

Our Tetrapropylammonium Bromide is an exceptional phase transfer catalyst, significantly improving reaction yields and reducing cycle times in complex organic synthesis, making it a cost-effective choice for pharmaceutical intermediates.

Uncompromised Quality and Purity

We guarantee a minimum purity of 99% for our Tetrapropylammonium Bromide, ensuring that researchers and product formulators receive a reliable chemical intermediate for their critical applications.

Cost-Effective Sourcing from China

As a leading supplier in China, we offer competitive pricing for bulk purchases of Tetrapropylammonium Bromide, providing significant cost benefits for your manufacturing and R&D operations.

Broad Industrial Applications of Tetrapropylammonium Bromide

Pharmaceutical Synthesis

Utilize our high-purity Tetrapropylammonium Bromide as a phase transfer catalyst to drive critical reactions in the production of pharmaceutical intermediates, enhancing efficiency and product quality.

Zeolite Structure Directing Agents

Tetrapropylammonium Bromide serves as a vital structure-directing agent in the synthesis of zeolites, crucial for catalysis and adsorption applications in various industries.

Electrochemical Applications

Explore the use of TPAB in electrochemical research, including the development of ionic liquids and as a potential component in advanced battery systems for improved performance.

General Organic Synthesis

As a versatile quaternary ammonium salt, TPAB is an indispensable reagent for organic chemists aiming to optimize reaction pathways and synthesize novel compounds efficiently.