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首页> 外文期刊>Diffusion and Defect Data. Solid State Data, Part B. Solid State Phenomena >Synthesis of Nano-Sized Co-Sb Compounds throughSolvothermal Routes
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Synthesis of Nano-Sized Co-Sb Compounds throughSolvothermal Routes

机译:溶剂热法合成纳米Co-Sb化合物

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摘要

Skutterudite materials have received great attention because their promising propertiesfor thermoelectric (TE) applications. Among the family of skutterudites, CoSb_3 has been intensivelynvestigated due to its large electrical conductivity and Seebeck coefficient. However, its thermalconductivity is too high to make it an effective TE material. Nanostructuring of CoSb_3 has thedesirable effects of reducing its lattice thermal conductivity as the point imperfections or grainboundaries can scatter phonons (heat carrier) more effectively than electrons (charge carrier). In this Study, nanostructured CoSb_3 was synthesized by solvothermal routes using CoC1_2·6H_2O and SbCl_3 as precursors dissolved in anhydrous ethanol with the reaction temperature kept at 240℃. In addition to the CoSb_3 phase, other Co-Sb compounds were also formed during the reaction process. In this paper, we investigated the effects of processing parameters, such as concentration of CoCl_2·6H_2O, SbCl_3 and NaBH_4 in ethanol and thermal duration of solvothermal synthesis, on the yield of CoSb_3 phase.
机译:方钴矿材料因其在热电(TE)应用中的良好性能而备受关注。在方钴矿家族中,CoSb_3由于其较大的电导率和塞贝克系数而受到了广泛的研究。然而,其导热率太高以致不能使其成为有效的TE材料。 CoSb_3的纳米结构具有降低其晶格热导率的理想效果,因为点缺陷或晶界可以比电子(电荷载流子)更有效地散射声子(热载流子)。本研究以溶剂热法,以CoC1_2·6H_2O和SbCl_3为前驱体,通过溶剂热法合成纳米结构化的CoSb_3,反应温度保持在240℃。除了CoSb_3相之外,在反应过程中还形成了其他Co-Sb化合物。本文研究了乙醇中CoCl_2·6H_2O,SbCl_3和NaBH_4的浓度以及溶剂热合成的热持续时间等工艺参数对CoSb_3相收率的影响。

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