High-Performance Ruthenium Catalyst: Dichloro(o-isopropoxyphenylmethylene)ruthenium Supplier for Advanced Synthesis

Discover the leading manufacturer and supplier of Dichloro(o-isopropoxyphenylmethylene)ruthenium (CAS 301224-40-8), a critical catalyst for advanced organic synthesis. Our product offers exceptional efficiency in olefin metathesis reactions, empowering innovative research and large-scale production.

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Key Advantages of Our Catalyst

Superior Catalytic Performance

This dichloro(o-isopropoxyphenylmethylene)ruthenium catalyst provides exceptional activity and selectivity in various olefin metathesis reactions, making it an indispensable tool for chemists seeking high yields and purity. Inquire about bulk purchase options from our trusted supplier.

Enabling Complex Synthesis

Its phosphine-free nature and robust structure make it ideal for challenging substrates, including fluorinated olefins. Explore how our catalyst can facilitate your complex synthetic routes; find the best price for your research and development needs.

Cost-Effective Sourcing from China

As a leading manufacturer in China, we offer competitive pricing for Dichloro(o-isopropoxyphenylmethylene)ruthenium. Partner with us for a stable and cost-effective supply of this critical fine chemical intermediate.

Broad Application Spectrum

Pharmaceutical Synthesis

Crucial for the synthesis of Active Pharmaceutical Ingredients (APIs) and complex drug molecules requiring precise metathesis steps. Contact us for a quote on our pharmaceutical-grade ruthenium catalyst.

Fine Chemical Intermediates

Essential in the production of various fine chemical intermediates, driving innovation in advanced materials and specialty chemicals.

Polymer Science

Used in ring-opening metathesis polymerization (ROMP) for creating advanced polymeric materials with tailored properties. Investigate our supply capabilities for your polymer research.

Materials Science

Enables the synthesis of novel organic materials, including functional polymers and complex molecular architectures for advanced applications.