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CAS:41919-30-6 | CHLOROMETHYLTRIS(TRIMETHYLSILOXY)SILANE

CAS:41919-30-6 | CHLOROMETHYLTRIS(TRIMETHYLSILOXY)SILANE

Molecular Formula:C10H29ClO3Si4
Molecular Weight:408.79
EINECS:345.13
Package:1g 5g 25g
Worldwide Delivery
Made in China

Product Introduction

Introduction of CAS:41919-30-6 | CHLOROMETHYLTRIS(TRIMETHYLSILOXY)SILANE

 

Chloromethyltris(trimethylsiloxy)silane (CMTTS) is an organosilicon compound commonly used in organic synthesis and as a reagent in biochemistry. It is a colorless liquid with a strong, pungent odor and is soluble in many organic solvents. CMTTS is used as a versatile reagent in organic synthesis and as a catalyst in various biochemical reactions due to its ability to form stable covalent bonds with a wide range of organic molecules.

 

Specification of CAS:41919-30-6 | CHLOROMETHYLTRIS(TRIMETHYLSILOXY)SILANE

 

ITEMS

SPECIFICATION

Boiling point

72 °C

Refractive index

1.4044

Density

0.968

Flash point

>65°C

 

Research Application of CAS:41919-30-6 | CHLOROMETHYLTRIS(TRIMETHYLSILOXY)SILANE

 

Surface Modification and Hydrophobic Coatings

Chloromethyltris(trimethylsiloxy)silane and similar compounds are extensively used in surface modification to achieve tunable hydrophilic, hydrophobic, and super-hydrophobic properties. The modification of silica surfaces has been demonstrated, where the surface characteristics can be precisely controlled to achieve desired hydrophobicity levels. This application is crucial for developing materials with specific water-repellent properties for coatings, membranes, and sensor technologies (García et al., 2007).

 

Electrolyte Solvents for Lithium-ion Batteries

Novel silane compounds, including derivatives of Chloromethyltris(trimethylsiloxy)silane, have been synthesized and utilized as non-aqueous electrolyte solvents in lithium-ion batteries. These silane molecules demonstrate an ability to dissolve various lithium salts effectively, contributing to the development of batteries with improved passivation films on electrodes, higher lithium-ion conductivities, and excellent cyclability under various temperature conditions, suggesting great potential for enhancing battery performance (Amine et al., 2006).

 

Enhancing Polymer Membranes

The application of Chloromethyltris(trimethylsiloxy)silane and related compounds in polymer chemistry, particularly in strengthening and improving the properties of polymer membranes, has been researched. For instance, silane compounds are employed as covalent crosslinkers in high-temperature proton exchange membranes based on polybenzimidazole. This approach aims to enhance the membranes' mechanical strength, conductivity, and durability, demonstrating the potential for use in fuel cell technologies (Yang et al., 2017).

 

Nanocomposites and Surface Activation

Research has also focused on the use of Chloromethyltris(trimethylsiloxy)silane and its derivatives for the surface activation and functionalization of nanomaterials, such as nanosilica, for integration into polymer matrices. This application is pivotal for creating nanocomposites with enhanced mechanical, thermal, and morphological properties. By modifying the surface of nanosilica with various silane coupling agents, improvements in tensile strength, dispersion, and thermal stability of the resulting polymer nanocomposites have been observed, highlighting the importance of silane treatments in nanocomposite technology (Lin et al., 2011).

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