首页> 外文期刊>Energy & environmental science >Reply to the 'Comment on 'Giant pyroelectric energy harvesting and a negative electrocaloric effect in multilayered nanostructures'' by X. Chen, V. Shvartsman, D. C. Lupascu and Q. M. Zhang, Energy Environ. Sci., 2021, DOI: 10.1039/ D0EE02548H
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Reply to the 'Comment on 'Giant pyroelectric energy harvesting and a negative electrocaloric effect in multilayered nanostructures'' by X. Chen, V. Shvartsman, D. C. Lupascu and Q. M. Zhang, Energy Environ. Sci., 2021, DOI: 10.1039/ D0EE02548H

机译:回复“评论”巨型热电能量收集和X.陈,五六角队,D.C.Lupascu和Q. M.张,能源环境中的多层纳米结构对多层纳米结构的负电热效应和负电热量效应。 SCI。,2021,D​​OI:10.1039 / D0EE02548H

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摘要

Chen et al. (2020) used schematics to claim that a temperature-dependent change in polarisation could not lead to a change in polar entropy of single and polycrystalline materials and hence should not be used for estimating electrocaloric effect (ECE) performance using Maxwell relations. Through this article, we explain how this reasoning does not fit well to our ECE estimates for PbZr0.53Ti0.47O3 (PZT) and CoFe2O4 (CFO) heterostructures in Vats et al. (2016). In addition, a detailed explanation of the calculation of ECE performance in our heterostructures is presented since Chen et al. (2020) reported difficulty in understanding how ECE calculations in particular temperature ranges, that were away from the highest ECE temperature, were related to the polarisation versus temperature data.
机译:陈等。 (2020)使用的原理图来要求偏振的温度依赖性变化不能导致单晶材料的极性熵的变化,因此不应使用Maxwell关系估算电热效应(ECE)性能。通过本文,我们解释了这种推理对于我们的ECE估计对VATS等人的PBZR0.53Ti0.47O3(PZT)和COFE2O4(CFO)异质结构的ECE估计。 (2016)。此外,由于陈等人来说,提出了对我们异质结构中ECE性能计算的详细说明。 (2020)报道难以理解ECE计算在特定的温度范围内,远离最高ECE温度的eCE计算与极化与温度数据有关。

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  • 来源
    《Energy & environmental science》 |2021年第3期|1615-1617|共3页
  • 作者单位

    Katholieke Univ Leuven Dept Phys & Astron Celestijnenlaan 200D B-3001 Leuven Belgium;

    CSIR Natl Phys Lab Dr KS Krishnan Marg Delhi 110012 India;

    Univ Bath Dept Mech Engn Mat Res Ctr Bath BA2 7AY Avon England;

    Univ Puerto Rico Dept Phys San Juan PR 00931 USA|Univ Puerto Rico Inst Funct Nanomat San Juan PR 00931 USA;

    Univ Puerto Rico Dept Phys San Juan PR 00931 USA|Univ Puerto Rico Inst Funct Nanomat San Juan PR 00931 USA;

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