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High performance thermoelectric module through isotype bulk heterojunction engineering of skutterudite materials

机译:高性能热电模块通过同一型散装物质的异形物质材料

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摘要

We demonstrate filled CoSb3 skutterudite materials with excellent thermoelectric (TE) performance that results in one of the highest reported single stage module efficiency. The improvement in TE material performance was obtained by creating isotype n/n "bulk heterojunction" structure through assembly of novel skutterudite nanocrystals with different Yb-doping content. Combination of significant increase in carrier transport through heterojunction structure and reduction in long-range acoustic phonon transmission by two-phase mixture resulted in enhanced power factor and reduced lattice thermal conductivity. As a result, the figure-of-merit (zT) of heterojunction TE material is improved by more than 35% compared with pristine single homogeneous material. Using these improved TE materials, a high module conversion efficiency of similar to 9.15% was obtained when operating between 650 degrees C and 50 degrees C. This is one of the highest conversion efficiency among the practically measured single stage modules.
机译:我们展示了具有优异的热电(TE)性能的填充COSB3 Skutterudite材料,导致最高报告的单级模块效率之一。通过组装具有不同YB掺杂含量的新型Skutterudite纳米晶体来产生TE材料性能的改善。通过异质结结构的载流子传输的显着增加和通过两相混合物减少远程声学声子传输的组合导致了增强的功率因数和降低的晶格导热率。结果,与原始单均匀材料相比,异质结Te材料的杂交TE材料的优选(Zt)提高了35%。使用这些改进的TE材料,当在650℃和50摄氏度之间工作时,获得了类似于9.15%的高模块转换效率。这是实际测量的单级模块中的最高转换效率之一。

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