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酸性丝光沸石催化甲苯与甲醇烷基化反应的理论研究

A theoretical study of the alkylation reaction of toluene with methanol catalyzed by acidic mordenite.

作者信息

Vos A M, Rozanska X, Schoonheydt R A, van Santen R A, Hutschka F, Hafner J

机构信息

Katholieke Universiteit Leuven, Departement Interfasechemie, Kardinaal Mercierlaan 92, B-3001 Heverlee, Belgium.

出版信息

J Am Chem Soc. 2001 Mar 28;123(12):2799-809. doi: 10.1021/ja001981i.

Abstract

A theoretical study of the alkylation reaction of toluene with methanol catalyzed by the acidic Mordenite (Si/Al = 23) is reported. Cluster DFT as well as periodical structure DFT calculations have been performed. Full reaction energy diagrams of the elementary reaction steps that lead to the formation of the three xylene isomers are given. The use of periodical structure calculations allows one to account for zeolite framework electrostatic contributions and steric constraints that take place in zeolitic catalysts. Especially the steric constraint energy contribution has a significant effect on the energies and bond formation paths. The activation energy barrier of p-xylene formation is found to be approximately 20 kJ/mol lower than the corresponding values for the formation of its isomers. Computed host-guest binding energies according to the DFT method need a correction due to the absence of the dispersive interaction with the zeolite wall. Apparent activation energies obtained with this correction are in good agreement with experimental data.

摘要

报道了对酸性丝光沸石(硅铝比=23)催化甲苯与甲醇烷基化反应的理论研究。进行了团簇密度泛函理论(DFT)以及周期性结构DFT计算。给出了导致三种二甲苯异构体形成的基元反应步骤的完整反应能量图。周期性结构计算的使用使得人们能够考虑沸石骨架静电贡献以及在沸石催化剂中发生的空间位阻。特别是空间位阻能量贡献对能量和键形成路径有显著影响。发现对二甲苯形成的活化能垒比对二甲苯异构体形成的相应值低约20kJ/mol。根据DFT方法计算的主客体结合能由于缺乏与沸石壁的色散相互作用而需要校正。校正后得到表观活化能与实验数据吻合良好。

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