首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >X- (X = O, S) ions in alkali halide lattices through density functional calculations. 1. Substitutional defect models
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X- (X = O, S) ions in alkali halide lattices through density functional calculations. 1. Substitutional defect models

机译:通过密度泛函计算得出碱金属卤化物晶格中的X-(X = O,S)离子。 1.替代缺陷模型

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摘要

Monoatomic X- (X = O, S) chalcogen centers in MZ (M = Na, K, Rb and Z = Cl, Br, I) alkali halide lattices are investigated within the framework of density functional theory with the principal aim to establish defect models. In electron paramagnetic resonance (EPR) experiments, X- defects with tetragonal, orthorhombic, and monoclinic g-tensor symmetry have been observed. In this paper, models in which X(-)replaces a single halide ion, with a next nearest neighbor and a nearest neighbor halide vacancy, are validated for the X- centers with tetragonal and orthorhombic symmetry, respectively. As such defect models are extended, the ability to reproduce experimental data is a stringent test for various computational approaches. Cluster in vacuo and embedded cluster schemes are used to calculate energy and EPR parameters for the two vacancy configurations. The final assignment of a defect structure is based on the qualitative and quantitative reproduction of experimental g and (super)hyperfine tensors.
机译:在密度泛函理论的框架内研究了MZ(M = Na,K,Rb和Z = Cl,Br,I)碱金属卤化物中的单原子X-(X = O,S)硫族元素中心,其主要目的是确定缺陷楷模。在电子顺磁共振(EPR)实验中,已观察到具有四方,正交和单斜g张量对称性的X缺陷。在本文中,分别用四角形和正交对称性的X中心验证了其中X(-)替换单个卤化物离子,下一个最近邻和一个最近邻卤化物空位的模型。随着此类缺陷模型的扩展,再现实验数据的能力成为各种计算方法的严格测试。真空中的群集和嵌入式群集方案用于计算两个空位配置的能量和EPR参数。缺陷结构的最终分配基于实验g和(超)超张量的定性和定量复制。

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