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Novel and efficient synthesis of insulating gas- heptafluoroisobutyronitrile from hexafluoropropylene

机译:六氟丙烯绝缘气体氟异丁腈的新颖有效合成

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摘要

A novel and efficient preparation route of insulating gas-heptafluoroisobutyronitrile was developed. The synthetic route involved halogen-exchange fluorination, decomposition of bis-(perfluoroisopropyl) ketone and dehydration reaction. Overall, the desired compound was produced without the use of extremely toxic and expensive substances. Structures of the as-obtained products were determined by 19F NMR, 13C NMR, IR and GC-MS. The effects of several variables on reaction yield including nature of potassium fluoride, the catalyst dosage, temperature, solvent and molar ratio of raw materials were all investigated. The results indicated that the total yield of heptafluoroisobutyronitrile could reach 42% from original materials under optimal conditions and the mechanism of the reaction was proposed.
机译:开发了一种新颖的高效制备绝缘气体 - 庚二种丁腈丁腈。合成途径涉及卤素 - 交换氟化,分解双 - (全氟异丙基)酮和脱水反应。总的来说,生产所需的化合物而不使用极其有毒和昂贵的物质。通过19F NMR,13C NMR,IR和GC-MS测定AS获得的产物的结构。几种变量对反应产率的影响,包括氟化钾的性质,催化剂剂量,温度,溶剂和原料的摩尔比的性质全部研究。结果表明,在最佳条件下,庚二氟异丁丁腈的总产量可达到原始材料的42%,提出了反应的机理。

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