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Kinetic and theoretical study of the effect of molecular sieve structure on the selectivity to propylbenzenes in alkylation of benzene with isopropyl alcohol

机译:分子筛结构对异丙醇烷基化苯中丙苯选择性影响的动力学和理论研究

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The alkylation of benzene with isopropyl alcohol was investigated over molecular sieves of different structural types and acidity by kinetic measurements and ab initio quantum chemical calculations. The formation of n-propylbenzene occurring via bimolecular transalkylation between isopropylbenzene and benzene is enhanced by the appropriate geometry of the reaction space and the acidity of molecular sieves, n-Propylbenzene was formed over medium and large pore molecular sieves with such inner channel architecture which enables the approach of isopropylbenzene and benzene to form the reaction complex. Mesoporous sieves of MCM-41 structure provided only isopropylbenzene with some amount of diisopropylbenzenes. For the fully relaxed complex consisting of protonated isopropylbenzene and benzene, the computations verified the transfer of propyl group from one benzene molecule to another forming again isopropylbenzene. When the geometrical conditions modelling the channel intersections of ZSM-5 and ZSM-11 structures were considered n-propylbenzene was formed. The anti-Markovnikov type of proton transfer from the arenium cation to the propene part of the complex is promoted by the steric constraints present in the channel intersections of ZSM-5 and ZSM-11 zeolites. [References: 37]
机译:通过动力学测量和从头算量子化学计算,研究了不同结构类型和酸度的分子筛上苯与异丙醇的烷基化反应。通过适当的反应空间几何形状和分子筛的酸度,可以提高异丙基苯与苯之间双分子烷基转移反应产生的正丙基苯的形成,在中孔和大孔分子筛上形成正丙基苯,并通过这种内部通道结构实现异丙苯与苯形成反应络合物的方法。 MCM-41结构的中孔筛仅提供异丙苯和一定量的二异丙苯。对于由质子化的异丙苯和苯组成的完全弛豫的配合物,计算结果证实了丙基从一个苯分子转移到另一个苯分子,再形成异丙苯。当考虑对ZSM-5和ZSM-11结构的通道相交进行建模的几何条件时,就形成了正丙基苯。 ZSM-5和ZSM-11沸石通道相交中存在的空间约束促进了反马尔科夫尼科夫型质子从芳烃阳离子转移到复合物的丙烯部分。 [参考:37]

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