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Self-propagating high-temperature synthesis for compound thermoelectrics and new criterion for combustion processing

机译:复合热电材料的自蔓延高温合成和燃烧处理的新标准

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The existing methods of synthesis of thermoelectric (TE) materials remain constrained to multi-step processes that are time and energy intensive. Here we demonstrate that essentially all compound thermoelectrics can be synthesized in a single-phase form at a minimal cost and on the timescale of seconds using a combustion process called self-propagating high-temperature synthesis. We illustrate this method on Cu2Se and summarize key reaction parameters for other materials. We propose a new empirically based criterion for sustainability of the combustion reaction, where the adiabatic temperature that represents the maximum temperature to which the reacting compact is raised as the combustion wave passes through, must be high enough to melt the lower melting point component. Our work opens a new avenue for ultra-fast, low-cost, large-scale production of TE materials, and provides new insights into combustion process, which greatly broaden the scope of materials that can be successfully synthesized by this technique.
机译:现有的合成热电(TE)材料的方法仍然受限于时间和能量密集的多步骤过程。在这里,我们证明,使用称为自蔓延高温合成的燃烧过程,基本上所有化合物热电学都可以以最小的成本在几秒钟的时间内以单相形式合成。我们在Cu 2 Se上说明了该方法,并总结了其他材料的关键反应参数。我们提出了一种基于经验的燃烧反应可持续性的新标准,其中绝热温度必须足够高以熔化较低熔点的成分,绝热温度代表随着燃烧波通过而使反应压块升高到的最高温度。我们的工作为超快速,低成本,大规模生产TE材料开辟了一条新途径,并为燃烧过程提供了新见解,极大地拓宽了可通过该技术成功合成的材料的范围。

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