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The Variety of Carbon-Metal Bonds inside Cu-ZSM-5 Zeolites: A Density Functional Theory Study

机译:Cu-ZSM-5分子筛内碳-金属键的变化:密度泛函理论研究

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Large-scale density functional theory calculations (DFT) found various types of binding of an unsaturated hydrocarbon (C2H2 and C2H4) to a ZSM-5 zeolite extraframework copper cation. We employed the DFT calculations based on the B3LYP functional to obtain local minima of an unsaturated hydrocarbon adsorbed on one or two copper cations embedded inside ZSM-5, and then compared their stabilization energies. The DFT results show that the stabilization energies are strongly dependent on the copper coordination environment as well as configurations of two copper cations. Consequently, the inner copper-carbon bonds are influenced substantially by a nanometer-scale cavity of ZSM-5.
机译:大规模密度泛函理论计算(DFT)发现了不饱和烃(C 2 H 2 和C 2 H < sub> 4 )转化为ZSM-5沸石骨架铜阳离子。我们使用基于B3LYP函数的DFT计算来获得吸附在ZSM-5内嵌的一个或两个铜阳离子上的不饱和烃的局部最小值,然后比较它们的稳定能。 DFT结果表明,稳定能强烈依赖于铜的配位环境以及两个铜阳离子的构型。因此,内部的铜-碳键基本上受到ZSM-5纳米级腔的影响。

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