3-Chloropropyltrimethoxysilane: Your Guide to Enhanced Material Performance and Applications

Unlock superior material properties with this versatile silane coupling agent. Discover its key applications and benefits.

Get a Quote & Sample

Key Product Advantages

Enhanced Adhesion

As a primary silane coupling agent, it significantly improves adhesion between organic and inorganic materials, a crucial factor in demanding applications.

Versatile Intermediate

Serves as a vital chemical intermediate for organosilanes, enabling the synthesis of specialized compounds with tailored properties for diverse industrial needs.

Improved Material Properties

Acting as a surface modifier for glass and metal, it imparts enhanced hydrophobicity, chemical resistance, and better overall material performance.

Key Applications

Adhesives & Sealants

Adhesives & sealants benefit from improved adhesion between organic and inorganic materials, leading to stronger and more durable bonds.

Coatings & Paints

Used as an additive in coatings and paints, it enhances adhesion to various substrates, contributing to longer-lasting finishes.

Rubber & Composites

Acts as an adhesion promoter for composite materials and rubber applications, improving mechanical properties and product longevity.

Chemical Synthesis

A crucial chemical synthesis intermediate for organosilanes, enabling the creation of advanced materials with specific functional properties.

Why Choose Us?

Leverage our expertise and state-of-the-art infrastructure to accelerate your journey from discovery to commercial success.

Global Experience

With 20 years of R&D, manufacturing, and sales experience, we proudly serve clients across 60 countries and regions worldwide.

Advanced Facilities

Our in-house R&D laboratory, pilot platform, and large-scale production workshop are equipped to meet the audit requirements of global customers.

Seamless Scalability

We facilitate a perfect transition from small-scale lab requirements (grams) to full commercialization (hundreds of tons).