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Ag doping induced abnormal lattice thermal conductivity in Cu2Se+

机译:Ag掺杂诱导Cu2Se +中的异常晶格导热系数

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Superionic Cu2Se-based thermoelectric materials have attracted extensive attention in recent years due to their ultralow lattice thermal conductivity and high dimensionless figure of merit (zT). Inspired by the effectiveness of heavy-element doping in reducing lattice thermal conductivity in various thermoelectric materials, we investigate the Ag-doping effects on the thermoelectric properties of Cu2Se nanocrystals made via a facile solvothermal method and subsequently spark plasma sintering. Based on the single parabolic band model analysis of thermoelectric properties, it has been found that the isoelectronic Ag dopant leads to an enhanced carrier concentration and significantly reduced carrier mobility, as well as a reduced electrical conductivity and power factor. Moreover, the reduced disorder-level of cations leads to an extraordinarily enhanced lattice thermal conductivity. All these result in a zT reduction for Ag-doped Cu2Se. This work systematically studies the influence of Ag dopants on the thermoelectric performance of Cu2Se and indicates that the Ag-doping is less promising in enhancing it.
机译:由于其超级晶格导热率和高度无量纲的优点(ZT),近年来,基于Suctionic Cu2se的热电材料引起了广泛的关注。灵感灵感来自重元掺杂在各种热电材料中降低晶格导热率的有效性,我们研究了通过容易溶液法制备的Cu2Se纳米晶体的热电性能的功率和随后的火花等离子体烧结。基于热电性能的单抛物线带模型分析,已经发现异电子AG掺杂剂导致增强的载体浓度,并且显着降低的载流子迁移率,以及降低的导电性和功率因数。此外,阳离子的减少紊乱导致非常增强的晶格导热系数。所有这些导致Ag掺杂Cu2SE的ZT减少。这项工作系统地研究了AG掺杂剂对Cu2SE热电性能的影响,表明Ag-Doping在增强它方面不太有希望。

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