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Solvothermal synthesis and thermoelectric properties of indium telluride nanostring-cluster hierarchical structures

机译:碲化铟纳米串-簇层次结构的溶剂热合成及热电性能

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摘要

A simple solvothermal approach has been developed to successfully synthesize n-type α-In2Te3 thermoelectric nanomaterials. The nanostring-cluster hierarchical structures were prepared using In(NO3)3 and Na2TeO3 as the reactants in a mixed solvent of ethylenediamine and ethylene glycol at 200°C for 24 h. A diffusion-limited reaction mechanism was proposed to explain the formation of the hierarchical structures. The Seebeck coefficient of the bulk pellet pressed by the obtained samples exhibits 43% enhancement over that of the corresponding thin film at room temperature. The electrical conductivity of the bulk pellet is one to four orders of magnitude higher than that of the corresponding thin film or p-type bulk sample. The synthetic route can be applied to obtain other low-dimensional semiconducting telluride nanostructures.PACS: 65.80.-g, 68.35.bg, 68.35.bt
机译:已经开发出一种简单的溶剂热方法来成功合成n型α-In2Te3热电纳米材料。在乙二胺和乙二醇的混合溶剂中于200°C下使用In(NO3)3和Na2TeO3作为反应物制备纳米串簇分层结构。提出了一种扩散限制反应机制来解释分层结构的形成。在室温下,由获得的样品压制的散装颗粒的塞贝克系数显示出比相应薄膜的塞贝克系数提高了43%。块状颗粒的电导率比相应的薄膜或p型块状样品的电导率高1-4个数量级。该合成路线可用于获得其他低维半导体碲化物纳米结构.PACS:65.80.-g,68.35.bg,68.35.bt

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