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Dielectric and Energy Storage Properties of Ba(1−x)CaxZryTi(1−y)O3 (BCZT): A Review

机译:Ba(1-x)CaxZryTi(1-y)O3(BCZT)的介电和储能特性

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摘要

The Ba Ca Zr Ti O (BCZT), a lead-free ceramic material, has attracted the scientific community since 2009 due to its large piezoelectric coefficient and resulting high dielectric permittivity. This perovskite material is a characteristic dielectric material for the pulsed power capacitors industry currently, which in turn leads to devices for effective storage and supply of electric energy. After this remarkable achievement in the area of lead-free piezoelectric ceramics, the researchers are exploring both the bulk as well as thin films of this perovskite material. It is observed that the thin film of this materials have outstandingly high power densities and high energy densities which is suitable for electrochemical supercapacitor applications. From a functional materials point of view this material has also gained attention in multiferroic composite material as the ferroelectric constituent of these composites and has provided extraordinary electric properties. This article presents a review on the relevant scientific advancements that have been made by using the BCZT materials for electric energy storage applications by optimizing its dielectric properties. The article starts with a BCZT introduction and discussion of the need of this material for high energy density capacitors, followed by different synthesis techniques and the effect on dielectric properties of doping different materials in BCZT. The advantages of thin film BCZT material over bulk counterparts are also discussed and its use as one of the constituents of mutiferroic composites is also presented. Finally, it summarizes the future prospects of this material followed by the conclusions.
机译:自2009年以来,无铅陶瓷材料Ba Ca Zr Ti O(BCZT)由于其大的压电系数和高介电常数而吸引了科学界的注意。钙钛矿材料是当前脉冲功率电容器行业的一种特有的介电材料,这反过来又导致了有效存储和提供电能的装置。在无铅压电陶瓷领域取得了令人瞩目的成就之后,研究人员正在探索这种钙钛矿材料的体积以及薄膜。可以看出,这种材料的薄膜具有出色的高功率密度和高能量密度,适用于电化学超级电容器应用。从功能材料的角度来看,这种材料也已在多铁性复合材料中得到关注,作为这些复合材料的铁电成分,并提供了出色的电性能。本文介绍了通过将BCZT材料用于电存储应用并通过优化其介电性能而取得的相关科学进展。本文首先介绍了BCZT,并讨论了这种材料对高能量密度电容器的需求,然后讨论了不同的合成技术以及在BCZT中掺杂不同材料对介电性能的影响。还讨论了薄膜BCZT材料相对于块状BCZT材料的优势,并提出了其作为多变复合材料成分之一的用途。最后,总结了该材料的未来前景以及结论。

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