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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Effect of anion substitution on the structural and transport properties of argyrodites Cu7PSe6-xSx
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Effect of anion substitution on the structural and transport properties of argyrodites Cu7PSe6-xSx

机译:阴离子替代对argyrodites CU7PSE6-Xsx结构和运输性能的影响

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摘要

Inspired by the good performance of argyrodites as ion conducting thermoelectrics and as solid electrolytes we investigated the effect of isovalent S2- substitution for Se2- in Cu7PSe6. At room temperature Cu7PSe6 crystallizes in the primitive cubic beta-polymorph of the argyrodite structure and transforms to the face-centered high-temperature (HT) gamma-modification above 320 K. The transition for the homologous Cu7PS6 occurs at 510 K. Promising thermoelectric and ion conducting properties are observed only in the HT modification, where the cations are mobile. Using Rietveld refinements against X-ray diffraction data the effect of isovalent S2- substitution for Se2- on the structural and transport properties in Cu7PSe6-xSx was analyzed. While a step-wise incorporation of S2- showed typical behavior for a homogeneous solid solution series, the analysis of the diffraction data gave clear evidence of anion ordering due to site preference of the sulfide ions, which can be rationalized using Pearson's HSAB concept. This leads to a stabilization of the HT structure even at lower temperatures. This selective control enables new strategies for the design of argyrodite materials, as isovalent substitution not only allows an engineering of properties, but also permits the stabilization of the polymorph with the most promising properties.
机译:灵感来自宇宙曲线的良好性能作为离子导电热电,作为固体电解质,我们研究了在Cu7Pse6中的Isoperent S2-取代的效果。在室温下,Cu7pse6在argyrodite结构的原始立方β-多晶型物中结晶,并转化为320k以上的面中心的高温(HT)γ修饰。同源Cu7PS6的过渡发生在510k.有前途的热电和仅在HT修改中观察到离子传导性能,其中阳离子是移动的。利用RIETVELD改进对X射线衍射数据进行分析,分析了SE2-对CU7PSe6-XSX中结构和运输特性的Isoporeent S2-取代的影响。虽然S2-显示出均匀固体溶液系列的典型行为,但是衍射数据的分析使由于硫化物离子的位点偏好导致的阴离子排序的明显证据可以使用Pearson的HSAB概念来合理化。即使在较低的温度下,这也导致HT结构的稳定性。这种选择性控制使得宇宙设计设计的新策略,因为不一致的取代不仅允许性能的工程,而且还允许具有最有前途的性质的多晶型物。

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