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Origins of the Inverse Electrocaloric Effect

机译:逆电热效应的起源

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摘要

The occurrence of the inverse (or negative) electrocaloric effect, where the isothermal application of an electric field leads to an increase in entropy and the removal of the field decreases the entropy of the system under consideration, is discussed and analyzed. Inverse electrocaloric effects have been reported to occur in several cases, for example, at transitions between ferroelectric phases with different polarization directions, in materials with certain polar defect configurations, and in antiferroelectrics. This counterintuitive relationship between entropy and applied field is intriguing and thus of general scientific interest. The combined application of normal and inverse effects has also been suggested as a means to achieve larger temperature differences between hot and cold reservoirs in future cooling devices. A good general understanding and the possibility to engineer inverse caloric effects in terms of temperature spans, required fields, and operating temperatures are thus of fundamental as well as technological importance. Here, the known cases of inverse electrocaloric effects are reviewed, their physical origins are discussed, and the different cases are compared to identify common aspects as well as potential differences. In all cases the inverse electrocaloric effect is related to the presence of competing phases or states that are close in energy and can easily be transformed with the applied field.
机译:讨论和分析了逆(或负面)电场的逆(或负)电流效应的发生,其中电场的等温施加导致熵的增加和去除场的熵减小了所考虑的系统的熵。据报道,逆电热效应在几种情况下发生,例如,在具有不同极化方向的铁电相之间的转变,以具有某些极性缺陷配置和排泄物的材料。熵和应用领域之间的这种反向联系是有趣的,因此是一般科学兴趣。还提出了正常和逆效应的综合应用作为在未来冷却装置中实现热水和冷藏储存器之间的较大温度差异的手段。因此,在温度跨度,所需领域和操作温度方面造成良好的普遍理解和工程逆热效应的可能性是基本的以及技术重要性。这里,审查了已知的逆电流效应的情况,讨论了它们的物理起源,并进行了不同的情况以识别共同的方面以及潜在的差异。在所有情况下,逆电热效应与在能量上靠近能量的竞争相或状态的存在有关,并且可以容易地用施加的场转换。

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