1,1,3,3-Tetraphenyl-1,3-dimethyldisilazane (CAS 7453-26-1): A Versatile Organosilicon Intermediate

Discover the critical properties and diverse applications of 1,1,3,3-Tetraphenyl-1,3-dimethyldisilazane, a specialized organosilicon compound. This article provides essential data for R&D scientists and procurement managers seeking high-quality chemical intermediates. Learn about its unique structure and potential uses in advanced synthesis and material science.

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Key Advantages for Your Application

Exceptional Thermal Stability

The robust nature of the tetraphenyl groups imparts significant thermal stability to 1,1,3,3-Tetraphenyl-1,3-dimethyldisilazane, making it suitable for processes requiring elevated temperatures. This characteristic is crucial for applications where material integrity under heat is paramount, assuring consistent performance for manufacturers.

Tailored Reactivity Profile

As a silazane derivative, this compound offers specific reactivity patterns that are valuable in organic synthesis. Its functional groups can be precisely manipulated, providing R&D scientists with a versatile tool for developing novel compounds and exploring new reaction pathways. Enquire about bulk purchase options.

Broad Application Potential

From acting as an intermediate in the synthesis of complex organic molecules to serving as a modifier for advanced materials, the utility of 1,1,3,3-Tetraphenyl-1,3-dimethyldisilazane is extensive. For product formulators, understanding its application scope is key to innovation.

Primary Application Areas

Organic Synthesis

Used as a building block or intermediate in the synthesis of complex organic molecules. Its structural features allow for diverse chemical transformations, crucial for researchers in pharmaceutical and fine chemical industries seeking to buy high-quality reagents.

Material Science Modification

Potential applications in modifying the properties of siliceous materials, including silicone rubber, silicone oils, and specialized coatings, enhancing their performance characteristics for industrial use.

Specialty Chemical Formulations

Incorporated into specialty formulations where its unique organosilicon properties can impart desired characteristics such as thermal stability or specific surface properties, benefiting product developers.

Research & Development

A valuable compound for academic and industrial R&D, enabling the exploration of new chemical reactions and material development. Explore our competitive pricing for R&D quantities.