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Next-generation electrocaloric and pyroelectric materials for solid-state electrothermal energy interconversion

机译:用于固态电热能互换的下一代电热和热电材料

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摘要

Thin-film electrocaloric and pyroelectric sources for electrothermal energy interconversion have recently emerged as viable means for primary and auxiliary solid-state cooling and power generation. Two significant advances have facilitated this development: (1) the formation of high-quality polymeric and ceramic thin films with figures of merit that project system-level performance as a large percentage of Carnot efficiency and (2) the ability of these newer materials to support larger electric fields, thereby permitting operation at higher voltages. This makes the power electronic architectures more favorable for thermal to electric energy interconversion. Current research targets to adequately address commercial device needs including reduction of parasitic losses, increases in mechanical robustness, and the ability to form nearly freestanding elements with thicknesses in the range of 1–10 μm. This article describes the current state-of-the-art materials, thermodynamic cycles, and device losses and points toward potential lines of research that would lead to substantially better figures of merit for electrothermal energy interconversion.
机译:用于电热能互变的薄膜电热和热电源最近已经成为用于初级和辅助固态冷却和发电的可行手段。两项重大进步促进了这一发展:(1)高质量聚合物和陶瓷薄膜的形成,其品质因数表明系统级性能占卡诺效率的很大百分比;(2)这些新型材料具有支持更大的电场,从而允许在更高的电压下运行。这使得电力电子架构更有利于热能到电能的互转换。当前的研究目标是充分满足商用设备的需求,包括减少寄生损耗,提高机械强度以及形成厚度在1–10μm范围内的几乎独立的元件的能力。本文介绍了当前最先进的材料,热力学循环和器件损耗,并指出了潜在的研究方向,这些潜在研究方向将大大改善电热能互转换的品质因数。

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