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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Thermal stability study of Cu1.97Se superionic thermoelectric materials
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Thermal stability study of Cu1.97Se superionic thermoelectric materials

机译:CU1.97SE外电材料的热稳定性研究

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摘要

With the development of high-temperature thermoelectric materials, especially the superionic copper selenide (Cu2-xSe), thermal stability and cycling thermoelectric performance have become a great concern recently. Here we demonstrate that the excellent repeatability of the thermal cycling data of a simple Cu-Se binary system can be obtained. The thermal stability was systematically studied via measuring the thermal-cycling thermoelectric performances of Cu1.97Se samples with different rates of Se evaporation by adopting a simple and controllable method, i.e., the conventional solid-state sintering method. The samples fabricated using the conventional sintering method exhibited an optimized figure of merit of 0.8 at 800 K with very good thermal repeatability and stability from 400 K to 800 K. The results indicated that the conventional sintering method can also be adopted to fabricate materials with satisfactory thermoelectric performance. It was found that the repeatability of thermal cycling data is directly related to the sintering temperature and indirectly associated with the evaporation of Se. The Cu1.97Se samples sintered at low temperatures experienced less evaporation of Se with good thermal repeatability, while they exhibited relatively low thermoelectric performance due to high carrier concentration. Although the samples sintered at high temperatures show a large variation in the thermal cycling performance, the repeatability could be improved by the further annealing process, which reveals that good thermal stability of thermoelectric materials can be obtained via post-treatment.
机译:随着高温热电材料的发展,尤其是消色硫铜硒(Cu2-XSE),热稳定性和循环热电性能最近成为一个很大的关注。在这里,我们证明可以获得简单Cu-SE二进制系统的热循环数据的优异可重复性。通过采用简单可控的方法,通过采用简单可控的方法,系统地研究了热稳定性,通过采用简单可控的方法,通过采用简单可控的方法来测量Cu1.97se样品的热循环热电性能。使用常规烧结方法制造的样品在800k处显示出0.8的优化值,其热重复性非常好,稳定性为400k至800k。结果表明,也可以采用常规烧结方法来制造令人满意的材料热电性能。发现热循环数据的可重复性与烧结温度直接相关,与SE的蒸发间接相关。在低温下烧结的Cu1.97SE样品经历了较小的热重复性蒸发,而由于高载体浓度,它们具有相对较低的热电性能。尽管在高温下烧结的样品显示出热循环性能的大变化,但是通过进一步的退火过程可以提高可重复性,这表明可以通过后处理获得热电材料的良好热稳定性。

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