Tetrakis(triphenylphosphine)platinum(0): A Key Catalyst in Organic Synthesis and Materials Science

Discover the power of Tetrakis(triphenylphosphine)platinum(0) (CAS 14221-02-4), a vital organometallic compound driving innovation in catalysis and advanced material development. As a reliable supplier in China, we provide high-purity platinum complexes essential for your research.

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Advantages Provided by the Product

Exceptional Catalytic Activity

Leverage the high catalytic efficacy of Tetrakis(triphenylphosphine)platinum(0) catalyst for efficient organic synthesis, significantly improving reaction yields and selectivity in complex chemical transformations.

Versatile Application Range

From pharmaceuticals to materials science, the broad utility of platinum complexes in organic synthesis empowers researchers to explore novel applications and develop cutting-edge products.

High Purity and Reliability

As a trusted supplier in China, we guarantee the quality of our CAS 14221-02-4 platinum catalyst, ensuring consistent performance and reproducible results in your laboratory or industrial processes.

Key Applications

Catalysis

As a vital Tetrakis(triphenylphosphine)platinum(0) catalyst, it drives key organic reactions, including crucial cross-coupling processes essential for modern chemical synthesis.

Organic Synthesis

The compound is indispensable for researchers focusing on platinum complexes in organic synthesis, enabling the creation of intricate molecular structures.

Materials Science

Its unique properties are harnessed in materials science, contributing to the development of advanced materials through innovative use of organometallic platinum complexes.

Pharmaceutical Intermediates

As a high-quality CAS 14221-02-4 platinum catalyst, it plays a pivotal role in the synthesis of pharmaceutical intermediates, supporting the development of new drugs.