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Multiscale structural engineering of dielectric ceramics for energy storage applications: from bulk to thin films

机译:多尺度结构工程电介质陶瓷为储能应用程序:从大部分对薄膜

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摘要

Dielectric capacitors with the prominent features of ultrafast charging-discharging rates and ultrahigh power densities are ubiquitous components in modern electronics. To meet the growing demand for electronics miniaturization, dielectric capacitors with high energy storage properties are extensively researched. Here we present an overview of the recent progress in the engineering of multiscale structures of dielectric ceramics ranging from bulk to thin films. This article commences with a brief introduction of the fundamentals of dielectric ceramics, including primary parameters, a library of dielectric ceramics, and multiscale structures. Emphases are placed on the relationship between multiscale structures and energy storage properties and the rational structure design principles in dielectric ceramics. Also included are currently available multilayer ceramic capacitors based on multiscale engineered ceramic structures. Finally, challenges along with opportunities for further research and development of high-performance dielectric ceramics for electrostatic energy storage are highlighted.
机译:介质电容器的突出特征超快充电放电率和超高功率密度是无处不在的在现代电子组件。对电子产品小型化,日益增长的需求与高储能介质电容器属性是广泛研究。目前的最新进展的概述工程的多尺度结构介电陶瓷从散货到薄电影。引入介质的基本原理陶瓷,包括主要参数、一个图书馆介电陶瓷和多尺度结构。多尺度结构和之间的关系能量存储属性和理性在电介质结构设计原则陶瓷。基于多尺度的多层陶瓷电容器工程陶瓷的结构。为进一步的挑战与机遇研究和开发高性能介电陶瓷的静电能量存储突出显示。

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