材料科学
电介质
储能
工程物理
介电常数
数码产品
光电子学
表征(材料科学)
介电损耗
能量转换
纳米技术
电气工程
工程类
功率(物理)
物理
热力学
量子力学
作者
Fan Wu,Aming Xie,Jiang Lai,Soumya Mukherjee,Han Gao,Jiaoyan Shi,Jiale Wu,Hongcheng Shang,Zhengxiao Sheng,Ronghui Guo,Lipeng Wu,Jun Liu,Matthew E. Suss,Alexandros Terzis,Weijin Li,Haibo Zeng
标识
DOI:10.1002/adfm.202212861
摘要
Abstract Dielectric materials with higher energy storage and electromagnetic (EM) energy conversion are in high demand to advance electronic devices, military stealth, and mitigate EM wave pollution. Existing dielectric materials for high‐energy‐storage electronics and dielectric loss electromagnetic wave absorbers are studied toward realizing these goals, each aligned with the current global grand challenges. Libraries of dielectric materials with desirable permittivity, dielectric loss, and/or dielectric breakdown strength potentially meeting the device requirements are reviewed here. Regardless, aimed at translating these into energy storage devices, the oft‐encountered shortcomings can be caused by either of two confluences: a) low permittivity, high dielectric loss, and low breakdown strength; b) low permittivity, low dielectric loss, and process complexity. Contextualizing these aspects and the overarching objectives of enabling high‐efficiency energy storage and EM energy conversion, recent advances in by‐design inorganic–organic hybrid materials are reviewed here, with a focus on design approaches, preparation methods, and characterization techniques. In light of their strengths and weaknesses, potential strategies to foster their commercial adoption are critically interrogated.
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