首页> 外文期刊>The Journal of Chemical Physics >Structure and properties of metal-exchanged zeolites studied using gradient-corrected and hybrid functionals. I. Structure and energetics
【24h】

Structure and properties of metal-exchanged zeolites studied using gradient-corrected and hybrid functionals. I. Structure and energetics

机译:使用梯度校正和杂化功能研究金属交换沸石的结构和性能。一,结构与能量学

获取原文
获取原文并翻译 | 示例
           

摘要

The structural and energetic properties of purely siliceous, proton-, and Cu- and Co-exchanged chabazite have been studied using periodic density-functional (DFT) calculations with both conventional gradient-corrected exchange-correlation functionals and hybrid functionals mixing exact (i.e., Hartree-Fock) and DFT exchange. Spin-polarized and fixed-moment calculations have been performed to determine the equilibrium and excited spin-configurations of the metal-exchanged chabazites. For the purely siliceous chabazite, hybrid functionals predict a slightly more accurate cell volume and lattice geometry. For isolated Al/Si substitution sites, gradient-corrected functionals predict that the lattice distortion induced by the substitution preserves the local tetrahedral symmetry, whereas hybrid functionals lead to a distorted Al coordination with two short and two long Al-O bonds. Hybrid functionals yield a stronger cation-framework binding that conventional functionals in metal-exchanged zeolites, they favor shorter cation-oxygen bonds and eventually also a higher coordination of the cation. Both types of functionals predict the same spin in the ground-state. The structural optimization of the excited spin-states shows that the formation of a high-spin configuration leads to a strong lattice relaxation and a weaker cation-framework bonding. For both Cu- and Co-exchanged chabazite, the prediction of a preferred location of the cation in a six-membered ring of the zeolite agrees with experiment, but the energy differences between possible cation locations and the lattice distortion induced by the Al/Si substitution and the bonding of the cation depends quite significantly on the choice of the functional. All functionals predict similar energy differences for excited spin states. Spin-excitations are shown to be accompanied by significant changes in the cation coordination, which are more pronounced with hybrid functionals. The consequences of electronic spectra and chemical reactivity are analyzed in the following papers.
机译:已经使用周期性密度函数(DFT)计算方法研究了纯硅质,质子,以及铜和钴交换的菱沸石的结构和能量性质,同时使用了常规的梯度校正交换相关函数和混合精确的混合函数(即, Hartree-Fock)和DFT交换。已经进行了自旋极化和固定矩计算,以确定了金属交换菱沸石的平衡和激发自旋构型。对于纯硅质菱沸石,混合官能团预测细胞体积和晶格几何形状会稍微精确一些。对于孤立的Al / Si取代位点,梯度校正的官能团预测由取代引起的晶格畸变会保留局部四面体对称性,而杂化官能团会导致具有两个短Al和两个长Al-O键的Al配位变形。杂化官能团产生的阳离子-骨架结合力强于金属交换沸石中的常规官能团,它们倾向于较短的阳离子-氧键,最终还具有更高的阳离子配位率。两种功能都可以预测基态的自旋。激发自旋态的结构优化表明,高自旋构型的形成导致强烈的晶格弛豫和较弱的阳离子-骨架键合。对于Cu和Co交换的菱沸石,预测沸石六元环中阳离子的优选位置与实验相符,但是可能的阳离子位置之间的能量差和Al / Si引起的晶格畸变阳离子的取代和键合在很大程度上取决于官能团的选择。所有功能对于激发的自旋状态预测相似的能量差异。旋转自激被证明伴随着阳离子配位的显着变化,而杂化功能更明显。在以下论文中分析了电子光谱和化学反应性的后果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号