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Compositional modulation is driven by aliovalent doping in n-type TiCoSb based half-Heuslers for tuning thermoelectric transport

机译:通过基于N型TiCOSB的半节快艇的Ali价掺杂来驱动组成调节,用于调谐热电传输

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摘要

The ternary intermetallic TiCoSb based half-Heusler (IIII) alloys are prominent material exhibiting good p-type thermoelectric (TE) performance. In this work, we studied the implication of V and Nb as n-type aliovalent dopants on Ti crystallographic site of semiconducting TiCoSb based HH alloys for attaining higher TE performance in n-type counterparts. The carrier concentration optimization between semiconducting (Ti1_ xVxCoSb) and semi-metallic regime (Ti1- xNbxCoSb) had resulted in maximum TE figure-of-merit (ZT) of 0.22 and 0.52 at 873 K for optimized Ti0.85V0.15CoSb and Ti0.85Nb0.15CoSb HH compositions, respectively. These substitutional alloys were synthesized using arc-melting and consolidated using spark plasma sintering, which resulted in biphasic microstructure with in-situ phase segregation of heterogeneously distributed Ti-rich precipitates at all length scales within the HH matrix, are examined by microstructural analysis using X-ray diffraction and electron microscopy. Interestingly, higher power factor and simultaneous reduction of thermal conductivity is observed in both the doping as a result of optimal carrier concentration and enhanced phonon scattering. However, Nbdoped alloys exhibit higher carrier mobility and more significant lattice thermal conductivity reduction, thus establishing n-type Ti1-xNbxCoSb HH alloys as an equally promising counterpart of p-type TiCoSb for mid temperature TE power generation.
机译:基于三元金属间化合物的半步Heusler(IIIII)合金是具有良好的P型热电(TE)性能的突出材料。在这项工作中,我们研究了在基于半导体TiCOSB的HH合金的Ti晶体位点上的v和Nb作为n型铝掺杂剂的含义,用于获得N型对应物中的更高TE性能。半导体(Ti1_XVXCOSB)和半金属制度(Ti1-XNBXCOSB)之间的载流子浓度优化导致最大TI型(ZT)为0.22和0.52,在873K下优化Ti0.85V0.15COSB和TI0。分别为85nb0.15cosb组成。这些取代合金使用电弧熔化合成并使用火花等离子体烧结合并,从而通过使用x的微观结构分析检查在HH基质内的所有长度尺度的异均匀分布的Ti富沉淀物的双相分离。 -Ray衍射和电子显微镜。有趣的是,由于最佳载流子浓度和增强的声子散射,在掺杂中观察到更高的功率因数和热导率的同时降低导热率。然而,Nbdoped合金具有更高的载流子迁移率和更高的晶格导热率降低,从而建立N型Ti1-XNBXCOSB HH合金,作为用于中温TE发电的P型TiCOSB的同样有前途的对应。

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