Isopropyldimethylchlorosilane (CAS 3634-56-8): A Versatile Organosilicon Intermediate

Explore the key properties, applications, and chemical significance of Isopropyldimethylchlorosilane in modern material science and chemical synthesis.

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Key Advantages Offered

Enhanced Material Performance

Leveraging its unique chemical structure, Isopropyldimethylchlorosilane contributes to high-performance adhesives by providing strong bonding capabilities and resistance to environmental factors.

Versatile Chemical Reactivity

As a versatile compound in organic synthesis organosilicon chemistry, it enables the precise introduction of isopropyl and dimethylsilyl groups, leading to innovative material properties.

Facilitates Advanced Coatings

The compound is instrumental in developing silane-based coatings that improve the stability and functionality of various substrates, aiding in the creation of advanced materials through effective silane coupling agent uses.

Key Applications

Silicone Production

Isopropyldimethylchlorosilane is a fundamental component in the silicone polymer synthesis, yielding materials with excellent flexibility and durability for sealants and coatings.

Surface Modification

It's widely used for surface modification, effectively enhancing hydrophobicity or adhesion properties, crucial for electronics and automotive industries seeking improved material performance.

Chemical Synthesis

In laboratories, it functions as a valuable chemical synthesis reagent, allowing researchers to introduce silane functionalities into organic molecules for new material and pharmaceutical development.

Adhesive Formulations

Its unique attributes make it ideal for formulating high-performance adhesives, offering robust bonding capabilities and superior resistance to environmental stressors, showcasing its high-performance adhesives potential.

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