材料科学
电致伸缩
锰
压电
光电子学
陶瓷
离子
掺杂剂
功勋
兴奋剂
能量收集
电气工程
工程物理
复合材料
功率(物理)
化学
工程类
冶金
物理
有机化学
量子力学
作者
Kaibiao Xi,Jianzhe Guo,Mupeng Zheng,Mankang Zhu,Yudong Hou
标识
DOI:10.1007/s40820-024-01556-5
摘要
Abstract High temperature piezoelectric energy harvester (HT-PEH) is an important solution to replace chemical battery to achieve independent power supply of HT wireless sensors. However, simultaneously excellent performances, including high figure of merit (FOM), insulation resistivity ( ρ ) and depolarization temperature ( T d ) are indispensable but hard to achieve in lead-free piezoceramics, especially operating at 250 °C has not been reported before. Herein, well-balanced performances are achieved in BiFeO 3 –BaTiO 3 ceramics via innovative defect engineering with respect to delicate manganese doping. Due to the synergistic effect of enhancing electrostrictive coefficient by polarization configuration optimization, regulating iron ion oxidation state by high valence manganese ion and stabilizing domain orientation by defect dipole, comprehensive excellent electrical performances ( T d = 340 °C, ρ 250 °C > 10 7 Ω cm and FOM 250 °C = 4905 × 10 –15 m 2 N −1 ) are realized at the solid solubility limit of manganese ions. The HT-PEHs assembled using the rationally designed piezoceramic can allow for fast charging of commercial electrolytic capacitor at 250 °C with high energy conversion efficiency ( η = 11.43%). These characteristics demonstrate that defect engineering tailored BF-BT can satisfy high-end HT-PEHs requirements, paving a new way in developing self-powered wireless sensors working in HT environments.
科研通智能强力驱动
Strongly Powered by AbleSci AI