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Far-infrared studies of the amorphous SbxGe28-xSe72 glassy semiconductor

机译:非晶态SbxGe28-xSe72玻璃半导体的远红外研究

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摘要

Various parameters in the structural features of the SbxGe28-xSe72 glassy system are studied as a function of average coordination number (r) in the light of recently proposed models for network glasses. The relation between the chemical ordered covalent network model and the constraint theory on the structural features is studied. The overall mean energy (E) of a covalent network for a ternary Sb-Ge-Se chacogenide system has been determined. In amorphous materials, there are non-random structural elements that have the behaviour of a simple chemical ordering. In addition, two topological effects are discussed, the floppy to rigid transition and the structural transition, which resulted in the SbxGe28-xSe72 glassy system and induced some changes in chemical ordering. The infrared transmission spectrum was measured in the wavenumber region 500-200 cm(-1) at room temperature. The results are interpreted in terms of the vibrations of the isolated molecular units in such a way as to preserve fourfold and twofold coordination for germanium and chalcogen atoms, respectively. The infrared features are assigned to Ge-Se bonds in GeSe4 tetrahedral units and Sb-Se bonds in pyramidal molecules. On the other hand, the results explain that a structural model, based on the random covalent network model assuming tetra-coordinated Ge, tri-coordinated Sb and di-coordinated Se, confirms the information obtained from infrared spectroscopy. References: 24
机译:根据最近提出的网络玻璃模型,研究了SbxGe28-xSe72玻璃体系结构特征中的各种参数作为平均配位数(r)的函数。研究了化学有序共价网络模型与结构特征约束理论的关系。已经确定了三元Sb-Ge-Se钞族化物体系共价网络的总平均能量(E)。在无定形材料中,存在具有简单化学有序行为的非随机结构元素。此外,还讨论了软向刚性转变和结构转变两种拓扑效应,这导致了SbxGe28-xSe72玻璃体系,并诱导了化学有序的一些变化。在室温下在波数区域500-200 cm(-1)测量红外透射光谱。根据分离分子单元的振动来解释结果,以分别保持锗和硫族原子的四倍和二倍配位。红外特征被分配给GeSe4四面体单元中的Ge-Se键和锥体分子中的Sb-Se键。另一方面,基于四配位Ge、三配位Sb和双配位Se的随机共价网络模型的结构模型证实了红外光谱获得的信息。[参考资料: 24]

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