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Arising applications of ferroelectric materials in photovoltaic devices

机译:铁电材料的应用 光伏器件

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摘要

The ferroelectric-photovoltaic (FE-PV) device, in which a homogeneous ferroelectric material is used as a light absorbing layer, has been investigated during the past several decades with numerous ferroelectric oxides. The FE-PV effect is distinctly different from the typical photovoltaic (PV) effect in semiconductor p–n junctions in that the polarization electric field is the driving force for the photocurrent in FE-PV devices. In addition, the anomalous photovoltaic effect, in which the voltage output along the polarization direction can be significantly larger than the bandgap of the ferroelectric materials, has been frequently observed in FE-PV devices. However, a big challenge faced by the FE-PV devices is the very low photocurrent output. The research interest in FE-PV devices has been re-spurred by the recent discovery of above-bandgap photovoltage in materials with ferroelectric domain walls, electric switchable diodes and photovoltaic effects, tip-enhanced photovoltaic effects at the nanoscale, and new low-bandgap ferroelectric materials and device design. In this feature article, we reviewed the advance in understanding the mechanisms of the ferroelectric photovoltaic effects and recent progress in improving the photovoltaic device performance, including the emerging approaches of integrating the ferroelectric materials into organic heterojunction photovoltaic devices for very high efficiency PV devices.
机译:在过去的几十年中,已经研究了使用均一铁电材料作为光吸收层的铁电光伏(FE-PV)器件,并使用了多种铁电氧化物。 FE-PV效应与半导体p–n结中的典型光伏(PV)效应明显不同,因为极化电场是FE-PV器件中光电流的驱动力。另外,在FE-PV器件中经常观察到异常光伏效应,其中沿极化方向的电压输出可能明显大于铁电材料的带隙。然而,FE-PV器件面临的一大挑战是非常低的光电流输出。最近发现具有铁电畴壁,电可开关二极管和光电效应,纳米级尖端增强的光电效应以及新的低带隙的材料中的带隙以上光电压,再次激发了人们对FE-PV器件的研究兴趣。铁电材料和器件设计。在这篇专题文章中,我们回顾了在了解铁电光伏效应机理方面的进展以及在改善光伏器件性能方面的最新进展,包括将铁电材料集成到非常高效的PV器件的有机异质结光伏器件中的新兴方法。

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