Institute of Chemistry and Chemical Technology, Russian Academy of Sciences, 660049 Krasnoyarsk, Russian Federation, Faculty of Chemistry, University of Sofia, 1126 Sofia, Bulgaria, and Department Chemie, Technische Universität München, 85747 Garching, Germany.
J Chem Theory Comput. 2005 May;1(3):459-71. doi: 10.1021/ct049910n.
We report the first computational study with a sophisticated quantum mechanics/molecular mechanics (QM/MM) technique that addresses the effect of the aluminum content on the properties of acidic zeolites. To account for both electrostatic and mechanical interaction between the QM cluster and its MM environment, we used cluster models embedded in the covalent variant of the elastic polarizable environment (covEPE) [Nasluzov, V. A.; Ivanova, E. A.; Shor, A. M.; Vayssilov, G. N.; Birkenheuer, U.; Rösch, N. J. Phys. Chem. B 2003, 107, 2228]. For the practical application of the covEPE method, it was necessary to develop a new force field for Al containing zeolites. Two types of zeolite materials, FAU and MFI, were employed as examples. We modeled the variation of the Al content both in the MM environment and in the QM cluster, and we studied pertinent properties of bridging OH groups of the zeolite frameworks, OH vibrational frequencies, and deprotonation energies. The computational results suggest that the local structure and the location of the OH groups exert a stronger effect than the variation of the Al content of the framework.
我们报告了第一项使用复杂的量子力学/分子力学 (QM/MM) 技术来研究铝含量对酸性沸石性质影响的计算研究。为了考虑 QM 簇与其 MM 环境之间的静电和机械相互作用,我们使用了嵌入共价变体弹性极化环境 (covEPE) 中的簇模型[Nasluzov, V. A.; Ivanova, E. A.; Shor, A. M.; Vayssilov, G. N.; Birkenheuer, U.; Rösch, N. J. Phys. Chem. B 2003, 107, 2228]。为了实际应用 covEPE 方法,有必要为含铝沸石开发新的力场。我们以 FAU 和 MFI 两种沸石材料为例。我们模拟了 MM 环境和 QM 簇中 Al 含量的变化,并研究了沸石骨架中桥接 OH 基团的相关性质、OH 振动频率和去质子化能。计算结果表明,局部结构和 OH 基团的位置比骨架中 Al 含量的变化对性能的影响更大。