Ethoxytriphenylsilane (CAS 1516-80-9): A Versatile Silane for Advanced Materials and Organic Synthesis

Discover the unique properties and diverse applications of Ethoxytriphenylsilane, a key intermediate for your advanced material and organic synthesis needs. Explore its role as a precursor for silicones and coupling agents, and learn why sourcing from a reliable manufacturer in China is crucial for your R&D and production.

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Key Advantages of Ethoxytriphenylsilane

High Purity and Consistent Quality

We supply Ethoxytriphenylsilane with assured purity levels, critical for sensitive applications in organic synthesis and material science. Buying from us means acquiring a reliable component for your formulation.

Versatile Application Profile

From advanced silicones to specialized organic intermediates, Ethoxytriphenylsilane offers a broad application scope. Consider purchasing this compound to enhance your product performance.

Cost-Effective Sourcing

As a leading manufacturer in China, we provide Ethoxytriphenylsilane at competitive prices, making it an economically viable option for businesses looking to buy quality chemicals without compromising on performance.

Applications in Modern Industries

Silicon-Based Material Synthesis

Ethoxytriphenylsilane serves as a vital precursor in the production of silicones and polymers, offering enhanced thermal stability and dielectric properties. Explore purchasing options for this material.

Advanced Organic Synthesis

Researchers and chemists utilize Ethoxytriphenylsilane as a protecting group or reagent, facilitating complex multi-step synthesis. Connect with us to buy for your research needs.

Silane Coupling Agents

Its ability to form robust bonds between organic and inorganic materials makes it an excellent component for coupling agents, improving adhesion and composite performance.

Surface Modification

Ethoxytriphenylsilane can be used to modify surface properties of various substrates, leading to applications in specialized coatings and functionalized materials.