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Novel optimization perspectives for thermoelectric properties based on Rashba spin splitting: a mini review

机译:热电的新优化的观点一个迷你基于Rashba自旋分裂:属性审查

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摘要

The energy problem has recently become increasingly more serious, therefore the rational use of heat energy and conversion into electrical energy is particularly important. The thermoelectric (TE) field is closely related to human life, as heat from automobiles, heat dissipation from high-power electrical appliances, or other electrical products that produce a lot of heat, can all be transformed with TE materials. The search for TE materials with an excellent performance and effective TE optimization strategies (STs) has attracted significant attention owing to the fact that thermal energy can be directly converted into electric energy. In contrast to the common TE-optimized STs, such as constructing point defects or reducing dimensionality, spin-related optimization STs have emerged from previous published research, such as the spin Seebeck effect or the Rashba effect, in which the Rashba effect shows an effective method to break through the bottleneck of ZT optimization. In this review, typical high ZT materials, common traditional optimized STs, Rashba-type TE materials and their corresponding ZT values are comprehensively discussed. The TE performance of Rashba-type materials is analysed, such as BiTeX (X = I, Br), GeTe, BiSbSeTe2, and the BiSb monolayer. Moreover, the TE optimization mechanisms (band engineering, phonon engineering, and Rashba spin-split engineering) are summarised. Finally, the development and challenges of Rashba spin-split combined with TE in breaking the bottleneck in ZT optimization are highlighted.
机译:能源问题最近成为越来越严重,因此,理性利用热能和转换成电能量是特别重要的。热电(TE)密切相关人生,从汽车热,热量耗散的大功率电电器、或其他电子产品产生大量的热,都可以改变TE的材料。与一个优秀的性能和有效的TE优化策略(STs)吸引了重要的由于这一事实的关注可以直接转换成热能电能。TE-optimized STs,如建设点缺陷或减少维度,spin-related优化STs从之前出现发表的研究,如旋转塞贝克效应或Rashba效应,Rashba效果显示了一个有效的方法来突破ZT型优化的瓶颈。审查,典型的高ZT型材料,常见的传统优化STs, Rashba-type TE材料和相应的ZT型值全面讨论。Rashba-type材料分析,如BiTeX(X =我Br)、GeTe BiSbSeTe2, BiSb单层。机制(带工程,声子工程,和Rashba spin-split工程)总结。的挑战Rashba spin-split结合TE在打破ZT型优化的瓶颈突出显示。

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