High Purity 3-Chloropropyltrichlorosilane: Your Premier Silane Coupling Agent Raw Material

Discover the critical role of 3-Chloropropyltrichlorosilane (CAS: 2550-06-3) as a foundational monomer in the production of advanced silane coupling agents. As a leading manufacturer and supplier in China, we offer high-purity material essential for sophisticated chemical synthesis.

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Advantages of Sourcing 3-Chloropropyltrichlorosilane

Uncompromising Purity for Superior Performance

Our 3-Chloropropyltrichlorosilane boasts a minimum purity of 99%, crucial for achieving optimal performance in demanding silane coupling agent applications. This ensures consistent and predictable outcomes in your manufacturing processes when you buy from our facility.

Strategic Monomer for Silane Coupling Agents

As the fundamental building block for many silane coupling agents, this chemical intermediate is indispensable for companies looking to develop and produce advanced surface modification solutions and composite materials.

Cost-Effective Sourcing from a Direct Manufacturer

Partnering with us, a direct manufacturer and supplier in China, offers competitive pricing and assured supply chain for 3-Chloropropyltrichlorosilane (CAS: 2550-06-3). Inquire about our bulk purchase options and current price lists.

Key Applications Driven by 3-Chloropropyltrichlorosilane

Silane Coupling Agent Manufacturing

The primary application of 3-Chloropropyltrichlorosilane is as a core monomer for synthesizing a wide range of silane coupling agents, vital for enhancing adhesion and compatibility in composite materials.

Advanced Material Synthesis

It serves as a critical precursor in the synthesis of specialized organosilicon compounds and advanced materials where specific functional properties are required.

Surface Modification Solutions

Used in creating functionalized surfaces for substrates, improving properties like adhesion, hydrophobicity, or chemical reactivity, a key area for industrial silane applications.

Research and Development

Valued in R&D for its versatile reactivity, enabling the exploration and development of novel silicon-based chemicals and materials.