Vinyl Tris(2-Methoxyethoxy) Silane
- CAS No.1067-53-4
- GradeIndustrial / Pharmaceutical
- Availability● In Stock
High-purity Vinyl Tris(2-Methoxyethoxy) Silane serves as an efficient adhesion promoter and crosslinker for mineral-filled polymers and coatings.
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Product Overview
Vinyl Tris(2-Methoxyethoxy) Silane is a advanced organosilicon compound designed to enhance the performance of composite materials and polymer systems. As a multifunctional coupling agent, it bridges the interface between inorganic substrates and organic matrices, ensuring superior bonding strength and durability. This product is particularly valued in industries requiring robust mechanical properties and resistance to environmental stressors such as moisture and heat.
Our manufacturing process ensures high chemical purity and consistency, making it an ideal choice for demanding industrial applications. The unique vinyl functionality allows for copolymerization with various resin systems, while the methoxyethoxy groups facilitate hydrolysis and bonding to surface hydroxyl groups on fillers or substrates.
Key Specifications
| Parameter | Value |
|---|---|
| CAS Number | 1067-53-4 |
| Molecular Formula | C11H24O6Si |
| Molecular Weight | 280.39 g/mol |
| Appearance | Colorless transparent liquid |
| Purity (GC) | ≥99.0% |
| Density | 1.034 g/cm3 |
| Boiling Point | 136.2oC |
| Flash Point | 92oC |
Industrial Applications
This silane coupling agent is extensively used as an adhesion promoter for mineral-filled polymers. It significantly improves the mechanical integrity and electrical properties of composites, especially after exposure to humid conditions. By enhancing the interaction between fillers and the polymer matrix, it reduces melt viscosity and facilitates easier processing during extrusion or molding.
In the coatings industry, it serves as a pretreatment for glass, metals, and ceramic surfaces. This application improves the adhesion of organic coatings to inorganic substrates, thereby enhancing corrosion resistance and longevity. Additionally, it acts as a co-monomer in the preparation of polyethylene and acrylic polymers, enabling moisture crosslinking which results in improved thermal stability and chemical resistance.
Performance Advantages
- Enhances adhesion between organic polymers and inorganic fillers.
- Improves mechanical properties such as tensile strength and impact resistance.
- Provides excellent moisture resistance and electrical insulation.
- Facilitates moisture-induced crosslinking in polymer systems.
- Reduces composite melt viscosity for better processing efficiency.
Storage and Handling
To maintain optimal quality, store this product in a cool, ventilated area away from direct sunlight and moisture sources. Keep containers tightly closed when not in use to prevent premature hydrolysis. Standard industrial safety protocols should be followed during handling, including the use of appropriate personal protective equipment. We offer flexible packaging options, including 200 kg drums, tailored to meet specific logistical requirements.
