High-Purity Norbornadiene Rhodium(I) Chloride Dimer: A Key Catalyst Precursor

Discover the critical role of Bicyclo[2.2.1]hepta-2,5-diene-rhodium(I) chloride dimer (CAS 12257-42-0) in advanced catalysis. As a leading manufacturer and supplier, we provide this essential rhodium precursor to drive innovation in your chemical synthesis and industrial processes. Explore its properties and applications.

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Advantages of Partnering with Our Chemical Manufacturer

Consistent Quality and Purity

Our commitment to rigorous quality control ensures that every batch of Norbornadiene Rhodium(I) Chloride Dimer meets the specified purity, a critical factor for researchers seeking reliable results in ligand synthesis and catalytic reactions.

Reliable Supply Chain

As a dedicated chemical supplier, we maintain a stable inventory and efficient production capabilities to meet the demands of your ongoing projects. Secure your supply of this crucial rhodium catalyst precursor from our Chinese manufacturing base.

Expert Technical Support

Leverage our expertise in precious metal catalysts. We are ready to assist you with inquiries regarding the application and handling of this compound, ensuring you can effectively buy and utilize it for your chemical needs.

Key Applications of Our Rhodium Precursor

Catalyst Development

The primary use of Norbornadiene Rhodium(I) Chloride Dimer is as a foundational precursor for the synthesis of a wide array of homogeneous rhodium catalysts. Researchers often buy this compound to create custom ligands for specific catalytic transformations.

Organic Synthesis

In the realm of organic chemistry, rhodium catalysts derived from this dimer are employed in reactions such as hydrogenation, hydroformylation, and cross-coupling, enabling efficient synthesis of complex organic molecules.

Pharmaceutical Intermediates

The precision and selectivity offered by rhodium catalysis make it invaluable for synthesizing complex pharmaceutical intermediates, where high purity and controlled reactions are paramount. Procurement of this precursor supports critical drug development pathways.

Material Science Research

Its unique coordination properties also make it a subject of interest in material science for the development of new functional materials and coordination complexes.