Chloromethylpropyl Methyl Dichlorosilane (CAS 1628-11-1): A Versatile Intermediate for Specialty Chemicals

Discover the key properties and applications of Chloromethylpropyl Methyl Dichlorosilane (CAS 1628-11-1), a crucial intermediate for the chemical industry. Learn why sourcing from a reliable manufacturer in China ensures quality and cost-effectiveness for your R&D and production needs.

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Advantages of Sourcing Our Silane Intermediates

Reliable Supply Chain

As a dedicated manufacturer, we guarantee a stable and consistent supply of Chloromethylpropyl Methyl Dichlorosilane, crucial for maintaining uninterrupted production. Partner with a dependable supplier in China.

Competitive Pricing

We offer competitive pricing for Chloromethylpropyl Methyl Dichlorosilane, ensuring cost-effectiveness without compromising on quality. Get the best price for this essential chemical.

Expert Technical Support

Our team provides expert technical support to assist you in utilizing Chloromethylpropyl Methyl Dichlorosilane effectively in your applications. We help you find the right solutions when you purchase chemical intermediates.

Key Application Areas for Chloromethylpropyl Methyl Dichlorosilane

Specialty Chemical Synthesis

Chloromethylpropyl Methyl Dichlorosilane is extensively used as an intermediate in the synthesis of various specialty chemicals, enhancing product performance and creating novel materials.

Organosilicon Chemistry

Its unique structure makes it a valuable reagent in organosilicon chemistry, enabling the development of advanced silicone-based materials with tailored properties. This is a critical area for material scientists.

Pharmaceutical Intermediates

The compound serves as a key intermediate in the pharmaceutical industry, contributing to the synthesis of active pharmaceutical ingredients (APIs) and drug discovery efforts.

Material Science Research

Researchers and formulators leverage Chloromethylpropyl Methyl Dichlorosilane for developing new polymers, coatings, and functional materials with improved thermal stability, chemical resistance, and surface properties.