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Prospects and challenges of the electrocaloric phenomenon in ferroelectric ceramics

机译:铁电陶瓷电热量现象的展望与挑战

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摘要

The electrocaloric effect (ECE), which refers to changes in the temperature of a material when an electric field is applied to or removed from the material, is one of the key phenomena of future highly efficient solid-state refrigeration devices. This field was not explored extensively owing to the deficiencies in usable and sufficient cooling capacity; however, a boom occurred approximately 15 years ago with the discovery of giant ECE in ferroelectric thin films. Since then, many reports have been published proposing different approaches to achieve giant ECE in different compositions or forms of ceramics, which can be broadly categorized as lead-based or lead-free, bulk or thin/thick, and multilayered or heterostructures. Various ECE-based cooling devices were also developed and their cooling performance was demonstrated. Two important aspects in this field are (1) to achieve giant ECE in materials by changing different parameters such as composition, geometry, and type, and (2) successful use of giant ECE in practical EC-based cooling devices. This review provides a focused view of the above two aspects, which will assist not only in the selection of materials for future cooling applications, but also in the realization of solid-state EC-based refrigeration.
机译:电热效应(ECE)是指当电场从材料施加或移除电场时材料的温度变化,是未来高效固态制冷装置的关键现象之一。由于可用性和充足的冷却能力不足,该领域并未广泛探讨;然而,大约15年前发生了繁荣,在铁电薄膜中发现了巨型ECE。从那时起,已经发表了许多报告,提出了在不同的组合物或陶瓷形式中实现巨型ECE的不同方法,其可以广泛地分类为铅基或无铅,散装或薄/厚,以及多层或异质结构。还开发了各种基于ECE的冷却装置,并证明了它们的冷却性能。该领域的两个重要方面是(1)通过改变不同参数,如组成,几何形状和类型等不同参数实现巨型ECE,以及​​(2)在实际的EC基冷却装置中成功使用巨型ECE。本综述提供了上述两个方面的重点视图,这将不仅可以在为未来的冷却应用中选择材料,而且还可以帮助实现固态EC的制冷。

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