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通过斜坡到尖峰烧结曲线提高铌酸钠基弛豫电介质的储能性能

Enhanced Energy Storage Performance of Sodium Niobate-Based Relaxor Dielectrics by a Ramp-to-Spike Sintering Profile.

作者信息

Yang Letao, Kong Xi, Cheng Zhenxiang, Zhang Shujun

机构信息

Institute for Superconducting and Electronic Materials, University of Wollongong, Wollongong, New South Wales 2500, Australia.

出版信息

ACS Appl Mater Interfaces. 2020 Jul 22;12(29):32834-32841. doi: 10.1021/acsami.0c08737. Epub 2020 Jul 7.

Abstract

Sodium niobate (NaNbO)-based lead-free ceramics have been actively studied for energy storage applications because of their antiferroelectric and/or relaxor features achieved in modified systems. The - loops of NaNbO-based ceramics are usually hysteretic because of the existence of a metastable ferroelectric phase at room temperature. In this study, by introducing aliovalent cations and A-site vacancies, the relaxor characteristics are greatly enhanced in (NaBi)(NbZr)O ceramics, leading to a high energy storage efficiency of above 90%. In addition, sintering aid CuO and a special ramp-to-spike sintering profile were employed to decrease the sintering temperature and reduce the grain size. The modified ceramic exhibits improved insulating properties and hence a higher breakdown strength, leading to a high recoverable energy density of 4.9 J/cm and a high energy efficiency of 88% at 430 kV/cm. The ceramic also exhibits satisfactory temperature stability over a wide temperature range from 25 to 125 °C and charge-discharge performance, making it a promising candidate for high-power dielectric energy storage applications.

摘要

基于铌酸钠(NaNbO)的无铅陶瓷因其在改性体系中实现的反铁电和/或弛豫特性而被积极研究用于储能应用。由于室温下存在亚稳铁电相,基于铌酸钠的陶瓷的电滞回线通常是滞后的。在本研究中,通过引入异价阳离子和A位空位,(NaBi)(NbZr)O陶瓷的弛豫特性得到极大增强,导致储能效率高于90%。此外,采用烧结助剂CuO和特殊的斜坡到尖峰烧结曲线来降低烧结温度并减小晶粒尺寸。改性陶瓷表现出改善的绝缘性能,因此具有更高的击穿强度,导致在430 kV/cm下可恢复能量密度高达4.9 J/cm³和能量效率高达88%。该陶瓷在25至125°C的宽温度范围内还表现出令人满意的温度稳定性和充放电性能,使其成为高功率介电储能应用的有前途的候选材料。

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