电热效应
铁电性
材料科学
储能
光电子学
薄膜
热电性
工程物理
纳米技术
工程类
物理
功率(物理)
电介质
量子力学
作者
Chengwen Bin,Xu Hou,Zeqing Yu,Luocheng Liao,Han Yang,Yunya Liu,Jie Wang
摘要
Flexible ferroelectric films with high polarization hold great promise for energy storage and electrocaloric (EC) refrigeration. Herein, we fabricate a lead-free Mn-modified 0.75 Bi(Mg0.5Ti0.5)O3-0.25 BaTiO3 (BMT-BTO) thin film based on flexible mica substrate. Excellent EC performance with maximum adiabatic temperature change (∆𝑇 ~23.5 K) and isothermal entropy change (∆𝑆 ~33.1 J K-1 kg-1) is achieved in the flexible BMT-BTO film, which is attributed to the local structural transition and lattice disorder near 90 °C. Meanwhile, a good energy storage density of ∼70.64 J cm−3 and quite high efficiency of ∼81.8% are realized in the same ferroelectric film, accompanied with excellent stability of frequency and electric fatigue (500-10 kHz and 108 cycles). Furthermore, there is no apparent variation in performance under different bending strains. These prominent properties indicate that the multifunctional BMT-BTO ferroelectric film is a promising candidate for applications of flexible energy storage and EC refrigeration.
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