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首页> 外文期刊>Nano letters >Giant Mechanocaloric Effects in Fluorite-Structured Superionic Materials
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Giant Mechanocaloric Effects in Fluorite-Structured Superionic Materials

机译:萤石结构超离子材料中的巨大机械热效应

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摘要

Mechanocaloric materials experience a change in temperature when a mechanical stress is applied on them adiabatically. Thus, far, only ferroelectrics and superelastic metallic alloys have been considered as potential mechanocaloric compounds to be exploited in solid-state cooling applications. Here we show that giant mechanocaloric effects occur in hitherto overlooked fast ion conductors (FIC), a class of multicomponent materials in which above a critical temperature, T-s, a constituent ionic species undergoes a sudden increase in mobility. Using first-principles and molecular dynamics simulations, we found that the superionic transition in fluorite-structured FIC, which is characterized by a large entropy increase of the order of 10(2) JK(-1) kg(-1), can be externally tuned with hydrostatic, biaxial, or uniaxial stresses. In particular, T-s can be reduced several hundreds of degrees through the application of moderate tensile stresses due to the concomitant drop in the formation energy of Frenkel pair defects. We predict that the adiabatic temperature change in CaF2 and PbF2, two archetypal fluorite-structured FIC, close to their critical points are of the order of 10(2) and 10(1) K, respectively. This work advocates that FIC constitute a new family of mechanocaloric materials showing great promise for prospective solid-state refrigeration applications.
机译:绝热材料在受到机械应力时会发生温度变化。因此,到目前为止,仅铁电和超弹性金属合金被认为是在固态冷却应用中可利用的潜在的机械热化合物。在这里,我们显示出巨大的机械热效应发生在迄今为止被忽视的快速离子导体(FIC)中,FIC是一类多组分材料,在临界温度T-s以上,组成离子物种的迁移率突然增加。使用第一性原理和分子动力学模拟,我们发现萤石结构的FIC中的超离子跃迁可以表征为10(2)JK(-1)kg(-1)的大熵增加。通过静水压力,双轴或单轴应力进行外部调整。特别地,由于弗伦克尔对缺陷的形成能的同时下降,通过施加适度的拉应力可以将T-s降低数百度。我们预测两个原型萤石结构的FIC CaF2和PbF2的绝热温度变化接近其临界点分别为10(2)和10(1)K。这项工作主张FIC构成了一种新型的机械热材料,显示出对未来固态制冷应用的巨大希望。

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