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首页> 外文期刊>Scientific reports. >Polarization-dependent interfacial coupling modulation of ferroelectric photovoltaic effect in PZT-ZnO heterostructures
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Polarization-dependent interfacial coupling modulation of ferroelectric photovoltaic effect in PZT-ZnO heterostructures

机译:PZT-ZnO异质结构中铁电光伏作用的偏振依赖性界面耦合调制

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Recently, ferroelectric perovskite oxides have drawn much attention due to potential applications in the field of solar energy conversion. However, the power conversion efficiency of ferroelectric photovoltaic effect currently reported is far below the expectable value. One of the crucial problems lies in the two back-to-back Schottky barriers, which are formed at the ferroelectric-electrode interfaces and blocking most of photo-generated carriers to reach the outside circuit. Herein, we develop a new approach to enhance the ferroelectric photovoltaic effect by introducing the polarization-dependent interfacial coupling effect. Through inserting a semiconductor ZnO layer with spontaneous polarization into the ferroelectric ITO/PZT/Au film, a p-n junction with strong polarization-dependent interfacial coupling effect is formed. The power conversion efficiency of the heterostructure is improved by nearly two orders of magnitude and the polarization modulation ratio is increased about four times. It is demonstrated that the polarization-dependent interfacial coupling effect can give rise to a great change in band structure of the heterostructure, not only producing an aligned internal electric field but also tuning both depletion layer width and potential barrier height at PZT-ZnO interface. This work provides an efficient way in developing highly efficient ferroelectric-based solar cells and novel optoelectronic memory devices.
机译:最近,由于太阳能转换领域的潜在应用,铁电钙钛矿氧化物引起了很多关注。然而,目前报告的铁电光伏效果的功率转换效率远远低于期望值。其中一个至关重要的问题位于两个背对背肖特基屏障中,它们形成在铁电电极接口并阻挡大部分光产生的载体到达外部电路。在此,我们通过引入偏振依赖性界面耦合效果来开发一种新方法来提高铁电光伏效果。通过将具有自发极化的半导体ZnO层插入铁电ITO / PZT / Au膜中,形成具有强偏振依赖性界面耦合效果的P-n结。异质结构的功率转换效率通过近两个数量级得到改善,偏振调制比增加约四倍。结果证明,偏振依赖性界面耦合效果可以产生异质结构的带状结构的巨大变化,不仅产生对准的内部电场,而且在PZT-ZNO接口处调节耗尽层宽度和潜在的阻挡高度。这项工作在开发高效的铁电基太阳能电池和新型光电存储器件方面提供了一种有效的方法。

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