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首页> 外文期刊>Chemistry, an Asian journal >Electrophilic Addition Reaction of Ethene with Hydrogen Chloride on Cold Molecular Films: Evidence of Ethyl Cationic Intermediate
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Electrophilic Addition Reaction of Ethene with Hydrogen Chloride on Cold Molecular Films: Evidence of Ethyl Cationic Intermediate

机译:乙烯与氯化氢在冷分子膜上的亲电加成反应:乙基阳离子中间体的证据

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摘要

We studied the initial-stage mechanism of the electrophilic addition reaction of ethene with HCl by examining the interactions between ethene and HCl on water-ice and frozen molecular films at temperatures of 80-140 K. Cs~(+) reactive ion scattering (RIS) and low-energy sputtering (LES) techniques were used to probe the reaction intermediates that were kinetically trapped on the surface, in conjunction with temperature-programmed desorption (TPD) mass spectrometry to monitor the desorbing species. The reaction initially produced the pi complex of HCl and ethene at temperatures below about 93 K and an "ethyl cationic species" at temperatures below about 100 K. The ethyl cationic species was formed via direct proton transfer from the HCl molecule to ethene with the assistance of water solvation, rather than via the interaction of hydronium ions and ethene. At high temperatures, this species dissociated into ethene and hydronium and chloride ions. The reaction did not, however, complete the final transition state on the ice surface to produce ethyl chloride. The observation gives evidence that the electrophilic addition reaction of ethene occurs through an ethyl-like intermediate with an ionic character.
机译:通过研究在80-140 K的温度下冰和冰冻分子膜上乙烯和HCl之间的相互作用,我们研究了乙烯与HCl的亲电加成反应的初始机理.Cs〜(+)反应性离子散射(RIS )和低能溅射(LES)技术与温度编程解吸(TPD)质谱法结合使用,以探测被动态捕获在表面上的反应中间体,以监测解吸物质。该反应最初在低于约93 K的温度下生成HCl和乙烯的pi络合物,并在低于约100 K的温度下生成“乙基阳离子种”。通过在HCl的帮助下将质子直接从HCl分子转移至乙烯,形成了乙基阳离子种。而不是通过水合氢离子与乙烯的相互作用在高温下,该物种解离为乙烯,水合氢离子和氯离子。然而,该反应没有完成在冰表面上的最终过渡态以产生氯乙烷。观察结果表明,乙烯的亲电子加成反应是通过具有离子特性的类乙基中间体发生的。

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