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The critical role of boron doping in the thermoelectric and mechanical properties of nanostructured alpha-MgAgSb

机译:硼掺杂在纳米结构α-mgagsb热电和力学性能中的关键作用

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The alpha-MgAgSb compound has attracted intensive attention as a promising candidate for the replacement of the traditional BiSbTe alloy for energy harvesting. Previous investigations have focused on how to enhance the thermoelectric performance while little interest has been placed on the aspect of mechanical properties. Herein, we highlighted the critical role of boron doping on the Sb site in the thermoelectric and mechanical properties of nanostructured alpha-MgAgSb, which significantly increased the mechanical properties without the deterioration of thermoelectric performance. The ineffectiveness of boron doping to enhance thermoelectric performance lied in the introduced perturbation to the valence band, resulting in a lower carrier mobility and power factor in comparison with that of doping on the Mg site. Due to the significant solution strengthening by boron doping, the corresponding Vickers microhardness values have been largely increased, which can be comparable to those of the mechanically robust p-type filled skutterudite. Our results not only highlight the promising prospect of alpha-MgAgSb-based materials for power generation but also provide a new and facile way to strengthen thermoelectric materials.
机译:Alpha-MgagSB化合物吸引了强化关注,作为更换传统的BISBTE合金以进行能量收集的有希望的候选者。以前的调查专注于如何提高热电性能,而在机械性能的方面则较少的兴趣。在此,我们强调了硼掺杂在纳米结构α-MgAgSB的热电和力学性能下的Sb位点上的关键作用,这显着增加了机械性能而不会产生热电性能的劣化。硼掺杂的效力是增强在引入的扰动中的热电性能与价带中的热电性能,导致较低的载流子迁移率和功率因数与MG位点上的掺杂相比。由于硼掺杂强化的显着溶液,相应的维持器显微硬度值大大增加,这可以与机械稳健的p型填充斯皮特拉迪岩的那些相当。我们的结果不仅突出了基于alpha-mgagsb的发电材料的有希望的前景,而且还提供了加强热电材料的新的和轻松的方式。

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