Hassan Faheem, Yang Donghao, Saadaoui Lotfi, Wang Yu, Drevensek-Olenik Irena, Qiu Ziyang, Shao Jingbin, Zhang Yiming, Gao Shaohua, Li Yigang, Zhang Xinzheng, Xu Jingjun
Opt Lett. 2024 Aug 15;49(16):4662-4665. doi: 10.1364/OL.527568.
The bulk photovoltaic (BPV) effect in ferroelectric liquid crystals is of increasing scientific interest owing to its great potential for light-energy conversion. The ferroelectric nematic phase exhibits a huge spontaneous polarization that can be aligned to a preferred direction. In this Letter, we investigate the tensorial properties of the BPV effect in the planarly aligned ferroelectric nematic phase of the liquid crystalline material RM734. A steady-state short-circuit photocurrent of ~160 pA and an open-circuit photovoltage of ~50 mV were observed in a cell with a thickness of 5.5 µm under the illumination of ultraviolet light without any bias voltage. Based on the photocurrent measurements in different electrode configurations, the non-zero elements of the BPV tensor were obtained. The BPV effect is attributed to the combination of the spontaneous polarization and the asymmetric distribution of photoinduced charge carriers. This study not only provides an understanding of the bulk PV mechanism in soft ferroelectrics but also promises a wide range of unprecedented, to the best of our knowledge, benefits for light harvesting to engineer marketable photovoltaic devices.
铁电液晶中的体光伏(BPV)效应因其在光能转换方面的巨大潜力而受到越来越多的科学关注。铁电向列相表现出巨大的自发极化,该极化可沿一个优选方向排列。在本信函中,我们研究了液晶材料RM734的平面取向铁电向列相中的BPV效应的张量性质。在没有任何偏置电压的情况下,在厚度为5.5 µm的单元中,在紫外光照射下观察到约160 pA的稳态短路光电流和约50 mV的开路光电压。基于在不同电极配置下的光电流测量,获得了BPV张量的非零元素。BPV效应归因于自发极化和光生载流子的不对称分布的结合。本研究不仅有助于理解软铁电体中的体光伏机制,而且据我们所知,有望为光捕获带来广泛的前所未有的好处,以设计出适销对路的光伏器件。