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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Realizing high thermoelectric performance in n-type SnSe polycrystals via (Pb, Br) co-doping and multi-nanoprecipitates synergy
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Realizing high thermoelectric performance in n-type SnSe polycrystals via (Pb, Br) co-doping and multi-nanoprecipitates synergy

机译:通过(PB,BR)共掺杂和多纳米尺寸协同作用,实现N型SNSE多晶体中的高热电性能

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摘要

Both p- and n-type SnSe single crystals have been reported to possess high thermoelectric performances, thus highlighting the possibility for commercialization. Polycrystalline SnSe that has better mechanical properties however possesses inferior thermoelectric properties compared to single crystal SnSe. In this work, n-type polycrystalline SnSe0.95 + x wt% PbBr2 (x = 0, 0.5, 1, and 1.5) samples were synthesized by combining mechanical alloying and spark plasma sintering technology. The effects of PbBr2 doping on thermoelectric performance of SnSe were studied in detail. The results show that the carrier concentration was dramatically increased from 2.51 x 10(17) cm(-3) in pure SnSe0.95 to 1.79 x 10(19) cm(-3) in SnSe0.95 + 1.5 wt% PbBr2, further resulting in an enhanced electrical conductivity. Multi-nanoprecipitates are present in the samples, including SnO, SnPb and SnBrxOy, which possibly affect the Seebeck coefficient and the lattice thermal conductivity. A peak ZT value of 1.1 was obtained at 773 K for the SnSe0.95 + 1.0 wt% PbBr2 sample. This work highlights that PbBr2 is an effective dopant to improve the TE performance of n-type polycrystalline SnSe. (C) 2021 Elsevier B.V. All rights reserved.
机译:据报道,p型和n型SnSe单晶都具有较高的热电性能,从而突出了商业化的可能性。与单晶SnSe相比,具有更好机械性能的多晶SnSe具有较差的热电性能。在这项工作中,n型多晶SnSe0。采用机械合金化和放电等离子烧结相结合的方法,制备了95+x wt%PbBr2(x=0,0.5,1,1.5)样品。详细研究了PbBr2掺杂对SnSe热电性能的影响。结果表明,在纯SnSe0中,载体浓度从2.51×10(17)cm(-3)显著增加。95至1.79x10(19)厘米-3英寸SnSe0。95+1.5 wt%PbBr2,进一步提高了导电性。样品中存在多个纳米沉淀,包括SnO、SnPb和SnBrxOy,这可能会影响Seebeck系数和晶格热导率。在773 K时,SnSe0的ZT峰值为1.1。95+1.0 wt%PbBr2样品。这项工作强调了PbBr2是改善n型多晶SnSe TE性能的有效掺杂剂。(c)2021爱思唯尔B.V.保留所有权利。

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