High-Purity Pd(η3-1-Ph-C3H4)(η5-C5H5) Catalyst Precursor for Advanced Cross-Coupling Reactions
Discover the exceptional catalytic performance of Pd(η3-1-Ph-C3H4)(η5-C5H5), a superior precursor for key organic transformations. We are a leading supplier in China, providing high-quality materials to accelerate your research and production.
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Allyl phenyl palladium cyclopentadienyl
Our Pd(η3-1-Ph-C3H4)(η5-C5H5) is a precisely synthesized organometallic compound, recognized for its role as an efficient catalyst precursor in various cross-coupling reactions. As a trusted manufacturer in China, we ensure consistent quality and purity (97%+) to meet the demanding needs of advanced organic synthesis. This complex offers enhanced stability and reactivity, making it a preferred choice for catalysis, particularly in Heck-Mizoroki and Sonogashira couplings, and has shown remarkable efficacy in Buchwald–Hartwig amination reactions.
- A Key Catalyst Precursor for Suzuki–Miyaura, Heck–Mizoroki, and Sonogashira cross-coupling reactions, this compound enables efficient formation of new carbon-carbon bonds.
- Demonstrates superior effectiveness in Buchwald–Hartwig amination reactions when compared to conventional palladium sources, making it ideal for complex amination projects.
- Its stability and high purity (97%+) ensure reliable and reproducible results in demanding catalytic applications.
- The compound's specific ability to generate PdL2 species underpins its high catalytic efficiency in various C-C and C-N bond-forming reactions.
Advantages of the Product
Enhanced Catalytic Efficiency
Experience significantly improved yields and reaction rates in cross-coupling reactions, leveraging the advanced properties of this palladium catalyst precursor.
Versatile Reaction Scope
This complex is highly effective across a spectrum of important organic transformations, including Buchwald–Hartwig amination, facilitating a wide range of synthetic pathways.
High Stability and Purity
Benefit from a stable compound with guaranteed high purity (97%+), ensuring consistency and reliability for your critical chemical synthesis needs.
Key Applications
Organic Synthesis
Utilize this palladium complex for intricate organic synthesis, particularly in creating complex molecular structures through efficient cross-coupling reactions.
Catalysis
As a premier catalyst precursor, it plays a vital role in advancing catalytic methodologies, enabling novel chemical transformations with high selectivity.
Pharmaceutical Intermediates
The reliability of this compound makes it an excellent choice for the synthesis of pharmaceutical intermediates, contributing to drug discovery and development.
Fine Chemicals
Manufacture high-value fine chemicals with greater efficiency and yield, leveraging the advanced catalytic capabilities offered by this organometallic palladium complex.