首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Composition-driven inverse-to-conventional transformation of electrocaloric effect and large energy storage density in strontium modified Ba(Zr0.1Ti0.9)O-3 thin films
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Composition-driven inverse-to-conventional transformation of electrocaloric effect and large energy storage density in strontium modified Ba(Zr0.1Ti0.9)O-3 thin films

机译:在锶改性BA(Zr0.1Ti0.9)O-3薄膜中,在锶改性Ba(Zr0.1ti0.9)O-3薄膜中的电热效应和大储能密度的组成驱动的逆常规转化

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摘要

In this work, (Ba1-xSrx)Zr0.1Ti0.9O3 (BSZTx, x = 0, 0.15, 0.25 and 0.35) thin films were successfully deposited on La0.7Sr0.3MnO3 (LSMO)-coated (001) SrTiO3 (STO) single crystal substrates using laser molecular beam epitaxy. The BSZTx thin films with compositions of x = 0 and 0.15 display an inverse electrocaloric effect (ECE) with a maximum adiabatic temperature change of Delta T similar to -10 K under 1500 kV cm(-1), while a large positive Delta T amounting to similar to 13 K is discovered in the strontium rich composition, i.e. x = 0.35. For the composition of x = 0.25 where weak ECE (|Delta T| < 2 K) is discovered, an energy storage density of 15.5 J cm(-3) with an efficiency of 69.8% is observed in the temperature range of 303-413 K. The composition-tunable electrocaloric effect and large energy storage density with excellent thermal stability in strontium modified Ba(Zr0.1Ti0.9)O-3 thin films are ascribed to the synergistic effects of different dynamics of polar nano-regions (PNRs) and conformed defect dipoles under large electric fields at elevated temperatures. This work will facilitate the development of novel solid-state cooling devices and provide a design route for high energy storage density devices.
机译:在这项工作中,成功地沉积在La0.7SR0.3MNO3(LSMO)涂层(LSMO)SRTIO3(STO)上成功地沉积了(BSZTX,X = 0,0.15,0.25和0.35)薄膜(BSZTX,X = 0,0.15,0.25和0.35)薄膜(LSMO)使用激光分子束外延的单晶基板。具有X = 0和0.15的组合物的BSZTX薄膜显示出与1500kVcm(-1)下的ΔT的最大绝热变化的最大绝热变化(-1),而大量ΔT在富含锶的组合物中发现类似于13 k,即x = 0.35。对于X = 0.25的组成,在发现弱ECE(|ΔT| <2k)的情况下,在303-413的温度范围内观察到效率为69.8%的15.5J厘米(-3)的能量存储密度K.在锶改性的BA(Zr0.1Ti0.9)O-3薄膜中具有优异的热稳定性的组合可调谐电流效应和大的储能密度归因于极性纳米区(PNRS)的不同动力学的协同效应升高温度下大电场下的兼容缺陷偶极子。这项工作将促进新型固态冷却装置的开发,并为高储能密度装置提供设计途径。

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