DVTMDS (CAS 7691-02-3): Powering Advanced Silicone, Coatings & Electronics

Discover 1,1,3,3-Tetramethyl-1,3-Divinyldisilazane (DVTMDS), a versatile chemical intermediate designed to elevate the performance of your silicone products, coatings, and electronic materials. Achieve superior adhesion, enhanced durability, and improved thermal stability with this cutting-edge solution.

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Key Advantages in Material Innovation

Superior Adhesion & Bonding

DVTMDS functions as an active silane coupling agent, establishing durable chemical bonds between organic and inorganic surfaces. This dramatically improves adhesion properties in coatings and composites, ensuring enhanced product integrity.

Enhanced Material Durability

Through its powerful cross-linking capabilities, DVTMDS imparts exceptional thermal stability and chemical resistance to silicone materials. This leads to increased crack resistance and anti-aging properties, extending the lifespan of critical components.

Optimized Performance & Stability

The product's ability to improve mechanical strength, elasticity, and provide reliable electrical insulation makes it invaluable. It’s a foundational element for manufacturers seeking high-purity silicone intermediate solutions.

Key Applications

Silicone Rubber & Resin Production

As a vital vinyl silazane, DVTMDS is extensively used in the manufacturing of high-performance silicone rubber and vinyl silicone resin, forming the backbone of durable and flexible materials.

Advanced Electronic Packaging

In electronic packaging materials, DVTMDS ensures the long-term stability and electrical insulation of sensitive components, making it a critical electronic chemical for cutting-edge devices.

High-Performance Coatings & Sealants

DVTMDS serves as an essential additive, significantly enhancing the adhesion and overall durability of high-performance coatings and sealants, providing superior protection against harsh environments.

Surface Modification & Adhesion Promotion

This versatile silazane is key for effective surface modification across various substrates, including fumed silica, metals, and glass, improving their bonding characteristics and enabling superior composite materials.

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