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Enhanced self-powered UV photoresponse of ferroelectric BaTiO 3 materials by pyroelectric effect

机译:增强的铁电Batio的自动UV光响应 3 材料通过热电效应

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ABSTRCTFerroelectric material BaTiO3(BTO) with intrinsic spontaneous polarization demonstrates excellent pyroelectric effect that output current/voltage signals can be observed even by slight temperature fluctuation. Here, we report a self-powered 365nm UV light photodetector by using the light-induced pyroelectric effect in Ag/BTO/Ag device with the response time of about 0.5s at the rising edge. Moreover, the heating-induced pyroelectric effect has been utilized to enhance the 365nm light response, where both the corresponding photoconductive gain and responsivity can be dramatically enhanced by larger than 1200% under a temperature variation rate of 2.1K/s as compared with that of UV light illumination. Our study proposes a feasible method to enhance the 365nm light response by coupling light and heating-induced pyroelectric effect in BTO, which has potential applications in thermal energy scavenging and self-powered sensor systems.Graphical abstractDisplay OmittedHighlights?
机译:<![cdata [ abstrct 铁电材料BATIO 3 (BTO),内在自发极化显示出优异的热电效果即使通过轻微的温度波动也可以观察到输出电流/电压信号。这里,通过在Ag / BTO / AG器件中使用响应时间在上升沿的响应时间为AG / BTO / AG器件中的光引起的热电效应报告自给电365nm紫外光光电探测器。此外,已经利用了加热诱导的热电效应来增强365nm的光响应,其中相应的光电导增益和响应性可以在与...相比的温度变化率下大于1200%而大于1200%。紫外线光照。我们的研究提出了一种可行的方法来通过在BTO中耦合光和加热诱导的热电效应来增强365nm光响应,这在热能清除和自动传感器系统中具有潜在的应用。 图形抽象 显示省略 突出显示

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