Department of Materials Science and Engineering, and Division of Advanced Materials Science, Pohang University of Science and Technology (POSTECH), Pohang 37673, Republic of Korea.
Nanoscale. 2018 Jul 13;10(27):13261-13269. doi: 10.1039/c7nr08666k.
Ferroelectric photovoltaics (FPVs) have drawn much attention owing to their high stability, environmental safety, and anomalously high photovoltages, coupled with reversibly switchable photovoltaic responses. However, FPVs suffer from extremely low photocurrents, which is primarily due to their wide band gaps. Here, we present a new class of FPVs by demonstrating switchable ferroelectric photovoltaic effects and narrow band-gap properties using hexagonal ferrite (h-RFeO3) thin films, where R denotes rare-earth ions. FPVs with narrow band gaps suggest their potential applicability as photovoltaic and optoelectronic devices. The h-RFeO3 films further exhibit reasonably large ferroelectric polarizations (4.7-8.5 μC cm-2), which possibly reduces a rapid recombination rate of the photo-generated electron-hole pairs. The power conversion efficiency (PCE) of h-RFeO3 thin-film devices is sensitive to the magnitude of polarization. In the case of the h-TmFeO3 (h-TFO) thin film, the measured PCE is twice as large as that of the BiFeO3 thin film, a prototypic FPV. The effect of electrical fatigue on FPV responses has been further investigated. This work thus demonstrates a new class of FPVs towards high-efficiency solar cell and optoelectronic applications.
铁电光伏(FPV)因其高稳定性、环境安全性和异常高的光伏电压,以及可反转的光伏响应而受到广泛关注。然而,FPV 存在极低的光电流,这主要是由于其宽带隙。在这里,我们通过展示使用六方铁氧体(h-RFeO3)薄膜的可切换铁电光伏效应和窄带隙特性,提出了一类新的 FPV,其中 R 表示稀土离子。具有窄带隙的 FPV 表明它们作为光伏和光电设备的潜在适用性。h-RFeO3 薄膜进一步表现出相当大的铁电极化(4.7-8.5 μC cm-2),这可能降低了光生电子-空穴对的快速复合速率。h-RFeO3 薄膜器件的功率转换效率(PCE)对极化强度的大小敏感。在 h-TmFeO3(h-TFO)薄膜的情况下,测量的 PCE 是典型 FPV 的 BiFeO3 薄膜的两倍。进一步研究了电疲劳对 FPV 响应的影响。这项工作因此展示了一类新的 FPV,有望用于高效太阳能电池和光电应用。