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含PbLa(ZrSnTi)O反铁电纳米填料的柔性介电纳米复合材料中的超高能量效率和大放电能量密度

Ultrahigh Energy Efficiency and Large Discharge Energy Density in Flexible Dielectric Nanocomposites with PbLa(ZrSnTi)O Antiferroelectric Nanofillers.

作者信息

Zou Kailun, He Chaohui, Yu Yuxi, Huang Jie, Fan Zhenhao, Lu Yinmei, Huang Haitao, Zhang Xin, Zhang Qingfeng, He Yunbin

机构信息

Ministry of Education Key Laboratory of Green Preparation and Application for Functional Materials, Hubei Key Lab of Ferro & Piezoelectric Materials and Devices, Hubei Key Laboratory of Polymer Materials, School of Materials Science & Engineering, Hubei University, Wuhan 430062, China.

Department of Applied Physics, The Hong Kong Polytechnic University, Hong Kong, China.

出版信息

ACS Appl Mater Interfaces. 2020 Mar 18;12(11):12847-12856. doi: 10.1021/acsami.9b23074. Epub 2020 Mar 4.

Abstract

Flexible dielectric capacitors have been widely studied recently on account of their fast charge-discharge speed, high power density, and superior wearable characteristics. Inorganic ferroelectric fillers/polymer matrix composites combining large maximum electric displacement () of ferroelectric materials with good flexibility and high electric breakdown strength () of the polymer are regarded as the most promising materials for preparing flexible dielectric capacitors with superior energy storage properties. However, simultaneously achieving large discharge energy density () and high energy efficiency (η) in these composites remains challenging on account of a large remnant electric displacement () and low - values of ferroelectric fillers. In contrast, antiferroelectrics (AFEs) exhibit near zero and larger - values and are thus attractive composite fillers to simultaneously achieve large and high η. On the basis of these factors, in this report, we design and prepare PbLa(ZrSnTi)O (PLZST) AFE nanoparticles (NPs)/poly(vinylidene fluoride--hexafluoropropylene) (P(VDF-HFP)) nanocomposites and investigate the effects of the Sn and AFE NPs contents on the energy storage capacity of the nanocomposites. Through reasonable adjustment of the Sn content and the PLZST AFE fillers content, because of the large - value of 7.75 μC/cm and small value of 0.26 μC/cm at the as high as 3162 kV/cm, the PbLa(ZrSnTi)O AFE NPs/P(VDF-HFP) polymer nanocomposite with 7 wt % fillers exhibits the most superior energy storage properties with an ultrahigh η of 93.4% and a large of 12.5 J/cm. These values are superior to those of the recently reported dielectric nanocomposites with a single-layer structure containing ferroelectric nanowires, nanofibers, nanobelts, nanotubes, and nanosheets or core-shell structure fillers, which are prepared via a very complicated method. This work not only shows that, in principle, the polarization characteristics of the composites depend mainly on those of the inorganic fillers but also demonstrates a convenient, effective, and scalable way to fabricate dielectric capacitors with superior flexibility and energy storage capacities.

摘要

近年来,柔性介电电容器因其快速充放电速度、高功率密度和优异的可穿戴特性而受到广泛研究。无机铁电填料/聚合物基体复合材料结合了铁电材料的大最大电位移()和聚合物良好的柔韧性及高耐电强度(),被认为是制备具有优异储能性能的柔性介电电容器最有前景的材料。然而,由于铁电填料的大剩余电位移()和低 - 值,在这些复合材料中同时实现大放电能量密度()和高能量效率(η)仍然具有挑战性。相比之下,反铁电体(AFEs)表现出接近零的 和更大的 - 值,因此是同时实现大 和高 η 的有吸引力的复合填料。基于这些因素,在本报告中,我们设计并制备了PbLa(ZrSnTi)O(PLZST)反铁电纳米颗粒(NPs)/聚偏氟乙烯 - 六氟丙烯(P(VDF-HFP))纳米复合材料,并研究了Sn和反铁电纳米颗粒含量对纳米复合材料储能容量的影响。通过合理调整Sn含量和PLZST反铁电填料含量,由于在高达3162 kV/cm的电场下具有7.75 μC/cm的大 - 值和0.26 μC/cm的小 值,含7 wt%填料的PbLa(ZrSnTi)O反铁电纳米颗粒/P(VDF-HFP)聚合物纳米复合材料表现出最优异的储能性能,具有93.4%的超高η和12.5 J/cm的大 。这些值优于最近报道的具有包含铁电纳米线、纳米纤维、纳米带、纳米管和纳米片的单层结构或核壳结构填料的介电纳米复合材料,后者是通过非常复杂的方法制备的。这项工作不仅表明,原则上复合材料的极化特性主要取决于无机填料的极化特性,还展示了一种方便、有效且可扩展的方法来制造具有优异柔韧性和储能容量的介电电容器。

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