Unlock Enhanced Material Performance with 3-Chloropropyltrimethoxysilane
A versatile silane coupling agent that significantly improves adhesion and material properties.
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3-Chloropropyltrimethoxysilane
3-Chloropropyltrimethoxysilane (CAS 2530-87-2) is a vital organosilane renowned for its exceptional capabilities as a silane coupling agent and surface modifier. Its unique chemical structure allows it to bridge organic and inorganic materials, leading to substantially improved adhesion, mechanical strength, and overall performance in a wide array of applications.
- Discover how to improve adhesion with silanes in your adhesive formulations for enhanced bonding strength.
- Explore its role as a key organosilane for rubber applications, boosting durability and performance.
- Learn about effective surface modification with silanes to tailor material properties for specific needs.
- Understand its significance as a crucial intermediate in synthesis of functional organosilanes, enabling innovation in material science.
Key Advantages
Superior Adhesion
Significantly enhances the bond between organic polymers and inorganic substrates, utilizing its function as a silane coupling agent.
Versatile Surface Modification
Effectively modifies surfaces to impart desirable properties, making it an excellent choice for surface modification with silanes.
Intermediate for Innovation
Serves as a foundational component in the synthesis of functional organosilanes, paving the way for novel material development.
Key Applications
Adhesives and Sealants
As a silane coupling agent, it improves the adhesion of polymers to inorganic fillers in adhesives and sealants.
Coatings and Paints
Enhances the adhesion and durability of coatings and paints to various substrates.
Rubber and Plastics
Used as an organosilane for rubber and plastic formulations to improve mechanical properties and compatibility.
Composites Manufacturing
Improves the mechanical and chemical properties of composite materials by enhancing the bond between the matrix and reinforcements.