New product recommendation--IOTA 5728 Phenyl dimethylchlorosilane .
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IOTA 5728 Chlorodimethylphenylsilane is a stable chemical raw material, often used in the field of silicone synthesis. Its chemical name for phenyl 2 methyl chlorosilane, the CAS number is 768-33-2, the formula for C8H11ClSi, molecular weight of 170.711, English name is Chlorodimethylphenylsilane. The liquid is colorless transparent to light yellow, with appropriate purity and stability. With an refractive index of n20/D 1.509(lit.) and a density of 1.017 g/mL, it exhibits suitable fluidity and adaptability at room temperature.
The boiling point of the product is 194-198 °C, the melting point is below 0 °C, and the flash point is 143 °F, which is suitable for a variety of industrial environments. IOTA 5728 phenyl dimethylchlorosilane can be used for the synthesis of organosilicon materials, with its chemical properties, in the production of siloxanes, silicone resins and other products have a certain application value. Its properties make it a common intermediate in silicone synthesis, which can be used to improve the properties of the final product, such as heat and chemical resistance, to adapt to different application scenarios. In high temperature, humid or corrosive environments, phenyldimethylchlorosilane can maintain its stable properties.
IOTA 5728 phenyldimethylchlorosilane has been certified for safety in storage and transportation. Its dangerous goods transport code is UN 2987 8/PG 2, belonging to Class 8 dangerous goods, packaging class II, in line with international standards for chemical transport, to ensure safe operation during transport. The customs code is 2931900090, which is convenient for customs clearance and clearance operations in export trade. Users should strictly abide by the relevant safety regulations during use and avoid contact with moisture in the air to reduce risks.
In summary, IOTA 5728 phenyl dimethylchlorosilane has stable physical and chemical properties, suitable for silicone synthesis, and is one of the materials in industrial production.