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  • How to Prepare Triflic Acid Using the Trifluoromethylation Process?

    This article details the trifluoromethyl oxidation method for preparing triflic acid (CF₃SO₃H) using trifluoroiodomethane (CF₃I) with silver salt catalysis and sodium sulfite, followed by hydrogen peroxide oxidation, ideal for small-scale laboratory synthesis. It covers apparatus, mechanism, reaction steps, materials, advantages, limitations, and alternatives.
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  • How to Prepare Triflic Acid via Electrolytic Fluorination

    This article provides a detailed explanation of electrolytic fluorination (Simons process) for preparing triflic acid (CF₃SO₃H), covering apparatus, mechanism, reaction steps, starting materials, advantages, limitations, and alternatives. Explore its applications in catalysis and synthesis.
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  • How does Triflic Acid undergo dehydration to form Triflic Anhydride?

    Explore the dehydration of triflic acid to triflic anhydride using phosphorus pentoxide or ketene, including detailed mechanisms, reaction conditions, yields, advantages, limitations, and practical considerations for organic synthesis.
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  • Methyltrichlorosilane vs. Dimethyldichlorosilane: Key Differences in Reactivity and Applications

    xplore the application and characterization of methyltrichlorosilane (MTS, CH₃SiCl₃) in silicon carbide (SiC) semiconductor processes, including CVD deposition, precise film control, surface modification, and evaluation techniques for high-performance devices.
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  • Why is ​Methyltrichlorosilane Hydrophobic?

    Discover the industrial applications of methyltrichlorosilane (CH₃SiCl₃, CAS 75-79-6) in silicones, polymers, surface treatments, electronics, and advanced materials. Explore key properties, market trends, growth drivers, and future outlook in construction, automotive, and semiconductor sectors.
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