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首页> 外文期刊>Nanoscale >The surface-to-volume ratio: a key parameter in the thermoelectric transport of topological insulator Bi2Se3 nanowires
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The surface-to-volume ratio: a key parameter in the thermoelectric transport of topological insulator Bi2Se3 nanowires

机译:团:一个关键参数拓扑的热电运输绝缘子Bi2Se3纳米线

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We systematically investigated the role of topological surface states on thermoelectric transport by varying the surface-to-volume ratio (s/v) of Bi2Se3 nanowires. The thermoelectric coefficients of Bi2Se3 nanowires were significantly influenced by the topological surface states with increasing the s/v. The Seebeck coefficient of Bi2Se3 nanowires decreased with increasing the s/v, while the electrical conductivity increased with increasing the s/v. This implies that the influence of metallic surface states become dominant in thermoelectric transport in thin nanowires, and the s/v is a key parameter which determines the total thermoelectric properties. Our measurements were corroborated by using a two-channel Boltzmann transport model.
机译:我们系统地研究了的角色在热电拓扑表面态运输通过改变表面体积比(s / v) Bi2Se3纳米线。系数Bi2Se3纳米线显著影响拓扑表面的州增加了s / v。塞贝克系数Bi2Se3纳米线下降增加了s / v,而电电导率增加,提高了s / v。这意味着金属的影响表面状态在热电成为主导在薄的纳米线,交通和s / v是一个关键参数决定热电性质。证实了通过使用一个双通道玻耳兹曼运输模型。

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