材料科学
聚酰亚胺
纳米复合材料
电容感应
氮化硼
聚合物
复合材料
聚合物纳米复合材料
带隙
电容器
原位聚合
高-κ电介质
电介质
聚合
光电子学
电压
电气工程
工程类
图层(电子)
作者
Ding Ai,He Li,Yao Zhou,Lulu Ren,Zhubing Han,Bin Yao,Wei Zhou,Ling Zhao,Jianmei Xu,Qing Wang
标识
DOI:10.1002/aenm.201903881
摘要
Abstract Modern electronics and electrical systems demand efficient operation of dielectric polymer‐based capacitors at high electric fields and elevated temperatures. Here, polyimide (PI) dielectric composites prepared from in situ polymerization in the presence of inorganic nanofillers are reported. The systematic manipulation of the dielectric constant and bandgap of the inorganic fillers, including Al 2 O 3 , HfO 2 , TiO 2 , and boron nitride nanosheets, reveals the dominant role of the bandgap of the fillers in determining and improving the high‐temperature capacitive performance of the polymer composites, which is very different from the design principle of the dielectric polymer composites operating at ambient temperature. The Al 2 O 3 ‐ and HfO 2 ‐based PI composites with concomitantly large bandgap and moderate dielectric constants exhibit substantial improvement in the breakdown strength, discharged energy density, and charge–discharge efficiency when compared to the state‐of‐the‐art dielectric polymers. The work provides a design paradigm for high‐performance dielectric polymer nanocomposites for electrical energy storage at elevated temperatures.
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