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首页> 外文期刊>Frontiers in Materials >Relative Influence of Topology, Dimensionality and Stoichiometry Toward the Properties of Covalent Network Glasses
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Relative Influence of Topology, Dimensionality and Stoichiometry Toward the Properties of Covalent Network Glasses

机译:拓扑,维度和化学计量对共价网络眼镜性质的相对影响

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Trends in density and fragility are analyzed in the Ge-As-Se, As-Se and Ge-Se system for the purpose of identifying correlation with structural characteristics related to topology, stoichiometry and dimensionality. The Ge-As-Se system provides the most revealing testbed as it permits to isolate individual effects. The fragility of Ge-As-Se glasses is clearly controlled by stoichiometric factors while the topological transition at =2.4 is not observed in this system. The density of Ge-As-Se glasses broadly increase with average coordination but show two anomalies centered near = 2.4 and 2.67. These anomalies merge into a single extremum corresponding to stoichiometric compositions when plotted against excess/deficiency in Se, thereby revealing their common link to stoichiometric factors. Nevertheless, when stoichiometric factors are fixed, dimensional effects are revealed in the form of a linear dependence upon content of tetrahedral Ge. Similarly, a diffuse maximum at the topological transition of = 2.4 is observed when only Se-excess compositions are considered. For the As-Se system, a local maximum in fragility is observed at the two dimensional composition As2Se3, contrary to predictions from topological or stoichiometric factors, thereby indicating that dimensional effect control the fragile behavior. Finally, in the Ge-Se system, a topological transition associated with balance of constraints and degrees of freedom is found at = 2.4 when contributions from stoichiometry and dimensionality are absent. In all system, no case is found where topological effects dominate either stoichiometric or dimensional effects, hence it can be concluded that it is the least predominant contribution while stoichiometry is found to be the prevailing effect.
机译:在Ge-AS-SE,AS-SE和GE-SE系统中分析了密度和脆弱性的趋势,以识别与与拓扑,化学计量和维度相关的结构特征的相关性。 GE-AS-SE系统提供最透露的测试平板,允许隔离个别效果。通过化学计量因子清楚地控制Ge-AS-SE玻璃的脆性,而在该系统中未观察到= 2.4的拓扑转变。 GE-AS-SE眼镜的密度随着平均配位而广泛增加,但展示了近= 2.4和2.67的两个异常。这些异常在绘制SE中的过量/缺乏时,这些异常合并成对应于化学计量组合物的单个极值,从而揭示其与化学计量因子的共同链接。然而,当化学计量因子是固定的时,尺寸效应以线性依赖性的形式揭示了四面体GE的含量。类似地,当考虑过量的组合物时,观察到= 2.4的拓扑转变时的漫反射最大值。对于AS-SE系统,在二维组合物AS2Se3处观察到脆性的局部最大值,与拓扑或化学计量因子的预测相反,从而指示尺寸效应控制脆弱的行为。最后,在GE-SE系统中,当不存在来自化学计量和维度的贡献时,发现与约束和自由度的平衡相关的拓扑转变和自由度。在所有系统中,没有发现拓扑效果支配化学计量或尺寸效应的情况下,因此可以得出结论,因为在化学计量是普遍的效果的同时是最不贡献的贡献。

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