Ultrahigh–energy density lead-free dielectric films via polymorphic nanodomain design
Article 2019 en
Authors
HP
Hao Pan
FL
Fei Li
YL
Yao Liu
Abstract
1 min read
Dielectric capacitors with ultrahigh power densities are fundamental energy storage components in electrical and electronic systems. However, a long-standing challenge is improving their energy densities. We report dielectrics with ultrahigh energy densities designed with polymorphic nanodomains. Guided by phase-field simulations, we conceived and synthesized lead-free BiFeO<sub>3</sub>-BaTiO<sub>3</sub>-SrTiO<sub>3</sub> solid-solution films to realize the coexistence of rhombohedral and tetragonal nanodomains embedded in a cubic matrix. We obtained minimized hysteresis while maintaining high polarization and achieved a high energy density of 112 joules per cubic centimeter with a high energy efficiency of ~80%. This approach should be generalizable for designing high-performance dielectrics and other functional materials that benefit from nanoscale domain structure manipulation.
Min Zhang, Shun Lan, Bing B. Yang, Hao Pan, Yi Q. Liu, Qing H. Zhang, Junlei Qi, Di Chen, Hang Su, Di Yi, Yueyang Yang, R. Wei, Hong Cai, Hao J. Han, Lin Gu, Ce‐Wen Nan, Yuanhua Lin
Discussion(0)
No comments yet. Be the first to comment.