Tetraacetoxysilane (CAS 562-90-3): Your Premier Source for Silicon Tetraacetate

Discover the critical properties and diverse applications of Tetraacetoxysilane. As a leading manufacturer and supplier in China, we provide high-purity Silicon Tetraacetate, essential for advanced material synthesis and industrial processes. Get a competitive quote for your bulk purchase needs.

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Key Advantages of Sourcing Our Tetraacetoxysilane

Exceptional Purity & Consistency

Our Tetraacetoxysilane is guaranteed at 90%+ purity, with options for specialized grades. This ensures predictable performance in your applications, whether for coatings or fine chemical intermediates.

Robust Supply Chain & Manufacturing Excellence

As a dedicated manufacturer in China, we leverage extensive experience to ensure a stable supply of Silicon Tetraacetate. Our production processes are optimized for efficiency and quality control, making us a dependable source when you need to purchase.

Technical Support & Customization

We offer comprehensive technical support for our CAS 562-90-3 product. Should you require specific lot analysis or have unique application inquiries, our team is ready to assist you in finding the right silicon tetraacetate solution.

Diverse Applications of Silicon Tetraacetate

Advanced Coatings Formulations

Tetraacetoxysilane acts as a crucial cross-linking agent or precursor in the development of specialized coatings, enhancing durability and adhesion. Discover how to buy this for your coating needs.

Fine Chemical Synthesis

Its reactivity makes Silicon Tetraacetate an invaluable intermediate in the synthesis of various fine chemicals and organosilicon compounds. Explore its use as a chemical intermediate.

Material Science Research

Researchers utilize Tetraacetoxysilane for synthesizing novel silicon-based materials with tailored properties for electronics and advanced composites. Find out where to purchase for your research.

Electronic Material Precursors

The precise chemical structure of CAS 562-90-3 makes it suitable as a precursor for electronic grade silicon-containing materials and thin films.