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Fast Direct Synthesis and Compaction of Homogenous Phase-Pure Thermoelectric Zn4Sb3

机译:均相纯热电Zn4Sb3的快速直接合成与压实

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摘要

Zn4Sb3 is among the cheapest high performance thermoelectric materials, and it is made of relatively nontoxic elements. Strong activities are aimed at developing commercial power generation modules based on Zn4Sb3 making it vital to develop fast reliable synthesis processes for high-quality material. Here direct synthesis and compaction of homogeneous phase-pure thermoelectric Zn4Sb3 by spark plasma sintering (SPS) has been developed. Compared with the traditional quench and press method, the complexity and process time of the new method is very significantly reduced (order of magnitude), making large-scale production feasible. A composition gradient is observed in the pellet along the axis of applied pressure and current. The homogeneity of the pressed pellets is studied as a function of the SPS parameters: sintering time, applied current, sintering temperature and applied pressure, and the mechanism behind the formation of the gradient is discussed. The key finding is that pure and homogeneous Zn4Sb3 pellets can be produced by adding an extra layer of elemental Zn foil to compensate the Zn migration.
机译:Zn4Sb3是最便宜的高性能热电材料之一,由相对无毒的元素制成。强大的活动旨在开发基于Zn4Sb3的商业发电模块,因此对于开发高质量材料的快速可靠的合成工艺至关重要。在这里,已经开发了通过火花等离子体烧结(SPS)直接合成和压实均相纯热电Zn4Sb3。与传统的淬火和压制方法相比,新方法的复杂性和处理时间大大降低了(数量级),从而使大规模生产变得可行。沿施加的压力和电流的轴在丸粒中观察到组成梯度。研究了压制球团的均质性与SPS参数的关系:烧结时间,施加电流,烧结温度和施加压力,并讨论了形成梯度的机理。关键发现是,通过添加额外的元素锌箔层来补偿Zn的迁移,可以生产出纯净均匀的Zn4Sb3球团。

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