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首页> 外文期刊>ACS applied materials & interfaces >Electric-Field-Dependent Surface Potentials and Vibrational Energy-Harvesting Characteristics of Bi(Na0.5Ti0.5)O-3-Based Pb-Free Piezoelectric Thin Films
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Electric-Field-Dependent Surface Potentials and Vibrational Energy-Harvesting Characteristics of Bi(Na0.5Ti0.5)O-3-Based Pb-Free Piezoelectric Thin Films

机译:Bi(Na0.5Ti0.5)基于PB的PB的PB的PB的PB的PB无铅电压薄膜的电场依赖性表面电位和振动能量收集特性

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The successful utilization of Pb-free piezoelectric materials is considered as critical since the piezoelectric material-based thin-film cantilever is still the preferred choice for commercial vibrational energy harvesters. Herein, we introduce a highly efficient piezoelectric energy harvester based on a Pb-free representative compound, Bi0.5Na0.5TiO3, which has not been explored so far. Applying a strong electric field for poling purposes brought unexpectedly huge changes in the dielectric constant and piezoelectric coefficient, which were responsible for the promising power density of 21.2 mu W/cm(2)/g(2)/Hz with 537.7 mV output voltage and 2.22 mu W output power for a 2 mu m thick 0.94(Bi0.5Na0.5)TiO3-0.06BaTiO(3) thin-film cantilever. The power density value is the best so far compared with any reported values for thin-film-based harvesters. As the origin of the effects of poling, the surface potentials across the grain structure are discussed in conjunction with the defect-dipole alignment, as evidenced by the increased oxygen vacancies on the film surface under an external bias field.
机译:由于基于压电材料的薄膜悬臂仪仍然是商业振动能量收割机的首选选择,因此认为PB的压电材料的成功利用被认为是至关重要的。在此,我们介绍了一种基于无铅代表性化合物Bi0.5na0.5tio3的高效的压电能量收割机,其目前尚未探讨。应用强大的电磁场用于抛光目的,介电常数和压电系数的出乎意料地提高了巨大的变化,这负责具有537.7 MV输出电压的21.2μmW/ cm(2)/ g(2)/ Hz的有前景的功率密度。 2.22 mu W输出功率为2 mu m厚的0.94(Bi0.5na0.5)TiO3-0.06batio(3)薄膜悬臂。与基于薄膜的收割机的任何报道的值相比,电力密度值是最佳的。作为抛光效果的起源,结合缺陷 - 偶极对准讨论晶粒结构的表面电位,如外部偏置场下的膜表面上的增加的氧空位所证明。

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