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Polymer-Based Dielectrics with High Energy Storage Density

机译:高储能密度的聚合物基电介质

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Polymer film capacitors are critical components in many high-power electrical systems. Because of the low energy density of conventional polymer dielectrics, these capacitors currently occupy significant volume in the entire electrical system. This article reviews recent progress made in the development of polymer dielectrics with high energy storage density, which can potentially lead to significant weight and volume reduction in polymer film capacitors. The increase in energy density is achieved through two, approaches, namely (a) the development of novel polymers with high electric polarization and optimized dielectric responses and (b) the development of nanocomposites containing polymer matrixes with high breakdown strength and inorganic nanofillers with high polarization. Promising progress has been made through both strategies, resulting in a maximum energy density of >30 J/cm~3, which is at least 5 times higher than those of conventional polymer dielectrics. The state-of-the-art manufacturing method for low-cost, high-throughput production of polymer films is also reviewed.
机译:聚合物薄膜电容器是许多大功率电气系统中的关键组件。由于常规聚合物电介质的能量密度低,这些电容器目前在整个电气系统中占据大量体积。本文回顾了具有高储能密度的聚合物电介质开发的最新进展,这可能会导致聚合物薄膜电容器的重量和体积显着减少。能量密度的提高是通过两种途径实现的,即(a)开发具有高电极化和优化介电响应的新型聚合物,(b)开发包含具有高击穿强度的聚合物基体和具有高极化的无机纳米填料的纳米复合材料。通过这两种策略都取得了可喜的进展,其最大能量密度> 30 J / cm〜3,比常规聚合物电介质高至少5倍。还回顾了低成本,高通量生产聚合物薄膜的最新制造方法。

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