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首页> 外文期刊>ACS applied materials & interfaces >Ultrahigh Energy Efficiency and Large Discharge Energy Density in Flexible Dielectric Nanocomposites with Pb0.97La0.02(Zr0.5SnxTi0.5-x)O-3 Antiferroelectric Nanofillers
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Ultrahigh Energy Efficiency and Large Discharge Energy Density in Flexible Dielectric Nanocomposites with Pb0.97La0.02(Zr0.5SnxTi0.5-x)O-3 Antiferroelectric Nanofillers

机译:具有PB0.97LA0.02(Zr0.5Snxti0.5-X)O-3防废料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密度

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摘要

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 (D-max) of ferroelectric materials with good flexibility and high electric breakdown strength (E-b) 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 (W-d) and high energy efficiency (eta) in these composites remains challenging on account of a large remnant electric displacement (D-r) and low D-max - D-r values of ferroelectric fillers. In contrast, antiferroelectrics (AFEs) exhibit near zero D-r and larger D-max - D-r values and are thus attractive composite fillers to simultaneously achieve large W-d and high eta. On the basis of these factors, in this report, we design and prepare Pb0.97La0.02(Zr0.5SnxTi0.5-x)O-3 (PLZST) AFE nanoparticles (NPs)/poly(vinylidene fluoride-co-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 D-max - D-r value of 7.75 mu C/cm(2) and small D-r value of 0.26 mu C/cm(2) at the E-b as high as 3162 kV/cm, the Pb0.97La0.02(Zr0.5Sn0.38Ti0.12)O-3 AFE NPs/P(VDF-HFP) polymer nanocomposite with 7 wt % fillers exhibits the most superior energy storage properties with an ultrahigh eta of 93.4% and a large W-d of 12.5 J/cm(3). 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.
机译:柔性介电电容器最近被广泛研究了它们的快速充放电速度,高功率密度和高耐磨特性。组合具有良好柔韧性和高电击穿强度(EB)的铁电材料的无机铁电填料/聚合物基复合材料与聚合物的良好柔韧性和高电击穿强度(EB)被认为是最有希望的材料,用于制备具有优异储能的柔性介电电容器特性。然而,在这些复合材料中同时实现大的放电能量密度(W-D)和高能量效率(ETA)仍然是由于铁电填料的大残余电力位移(D-R)和低D-MAX-D-R值而持挑战性。相反,消耗电极(余量)在零D-R和较大的D-MAX-D-R值附近表现出较近的,因此具有吸引力的复合填料,以同时实现大的W-D和高ETA。在这些因素的基础上,在本报告中,我们设计和准备PB0.97LA0.02(Zr0.5SnXTi0.5-X)O-3(PLZST)AFE纳米颗粒(NPS)/聚(偏二氟乙烯 - 共六氟丙烯) (P(VDF-HFP))纳米复合材料,并研究SN和AFE NPS内容对纳米复合材料的能量储存容量的影响。通过合理调整SN含量和PLZST AFE填充物的含量,因为D-MAX-DR值为7.75 mu C / cm(2),并且EB的小DR值为0.26米C / cm(2)高达3162 kV / cm,Pb0.97la0.02(Zr0.5sn0.38ti0.12)O-3 AFE NPS / p(VDF-HFP)聚合物纳米复合材料,具有7wt%填料具有最优质的能量储存性能超高ETA为93.4%,大WD为12.5 J / cm(3)。这些值优于最近报道的介电纳米复合材料,其中包含铁电纳米线,纳米纤维,纳米核,纳米管和纳米片或核 - 壳结构填料的单层结构,其通过非常复杂的方法制备。这项工作不仅示出了原则上,复合材料的偏振特性主要取决于无机填料的偏振特性,而且还依赖于无机填料的那些,而且还示出了制造具有优异柔韧性和能量存储能力的介电电容器的方便,有效和可扩展的方法。

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  • 来源
    《ACS applied materials & interfaces》 |2020年第11期|共10页
  • 作者单位

    Hubei Univ Key Lab Green Preparat &

    Applicat Funct Mat Hubei Key Lab Ferro &

    Piezoelect Mat &

    Devices Hubei Key Lab Polymer Mat Sch Mat Sci &

    Engn Mini Wuhan 430062 Hubei Peoples R China;

    Hubei Univ Key Lab Green Preparat &

    Applicat Funct Mat Hubei Key Lab Ferro &

    Piezoelect Mat &

    Devices Hubei Key Lab Polymer Mat Sch Mat Sci &

    Engn Mini Wuhan 430062 Hubei Peoples R China;

    Hubei Univ Key Lab Green Preparat &

    Applicat Funct Mat Hubei Key Lab Ferro &

    Piezoelect Mat &

    Devices Hubei Key Lab Polymer Mat Sch Mat Sci &

    Engn Mini Wuhan 430062 Hubei Peoples R China;

    Hubei Univ Key Lab Green Preparat &

    Applicat Funct Mat Hubei Key Lab Ferro &

    Piezoelect Mat &

    Devices Hubei Key Lab Polymer Mat Sch Mat Sci &

    Engn Mini Wuhan 430062 Hubei Peoples R China;

    Hubei Univ Key Lab Green Preparat &

    Applicat Funct Mat Hubei Key Lab Ferro &

    Piezoelect Mat &

    Devices Hubei Key Lab Polymer Mat Sch Mat Sci &

    Engn Mini Wuhan 430062 Hubei Peoples R China;

    Hubei Univ Key Lab Green Preparat &

    Applicat Funct Mat Hubei Key Lab Ferro &

    Piezoelect Mat &

    Devices Hubei Key Lab Polymer Mat Sch Mat Sci &

    Engn Mini Wuhan 430062 Hubei Peoples R China;

    Hong Kong Polytech Univ Dept Appl Phys Hong Kong Peoples R China;

    Wuhan Univ Technol State Key Lab Adv Technol Mat Synth &

    Proc Ctr Smart Mat &

    Devices Wuhan 430070 Peoples R China;

    Hubei Univ Key Lab Green Preparat &

    Applicat Funct Mat Hubei Key Lab Ferro &

    Piezoelect Mat &

    Devices Hubei Key Lab Polymer Mat Sch Mat Sci &

    Engn Mini Wuhan 430062 Hubei Peoples R China;

    Hubei Univ Key Lab Green Preparat &

    Applicat Funct Mat Hubei Key Lab Ferro &

    Piezoelect Mat &

    Devices Hubei Key Lab Polymer Mat Sch Mat Sci &

    Engn Mini Wuhan 430062 Hubei Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    antiferroelectrics; antiferroelectrics/polymer nanocomposites; electric displacement; discharge energy density; energy efficiency;

    机译:防火电极;防火电极/聚合物纳米复合材料;电置换;放电能量密度;能量效率;

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