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EMBEDDED DENSITY FUNCTIONAL APPROACH FOR CALCULATIONS OF ADSORPTION ON IONIC CRYSTALS

机译:离子晶体吸附计算的嵌入式密度泛函法

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We present an embedded density functional approach to study adsorption on crystalline surfaces. Following ideas suggested by Cortona, Wesolowski, and Warshel, we divide the total system into a quantum cluster and the surrounding lattice whose density is assumed to be the same as in the ideal crystal. In this case the Kohn-Sham Hamiltonian for electrons in the cluster contains additional terms corresponding to the Coulomb, exchange, correlation, and ''nonadditive kinetic energy'' potentials from the environment. Test calculations for the He and Ar dimers, X-H2O molecular complexes (X=Li+, Na+, K+, F- or Cl-) and water adsorption on the (001) surface of the NaCl crystal suggest that this model provides a promising alternative for cluster models employed earlier for calculations of defects and adsorption on ionic crystals. (C) 1996 American Institute of Physics. [References: 58]
机译:我们提出了一种嵌入式密度泛函方法来研究晶体表面的吸附。遵循Cortona,Wesolowski和Warshel提出的想法,我们将整个系统划分为一个量子簇和周围的晶格,并假设其密度与理想晶体中的密度相同。在这种情况下,簇中电子的Kohn-Sham哈密顿量包含与环境中的库仑,交换,相关和“非相加动能”电势相对应的附加项。 He和Ar二聚体,X-H2O分子络合物(X = Li +,Na +,K +,F-或Cl-)的测试计算以及在NaCl晶体(001)表面上的水吸附表明该模型提供了一个有希望的替代方案用于较早用于计算缺陷和离子晶体吸附的簇模型。 (C)1996年美国物理研究所。 [参考:58]

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