Li Ruiqing, Wang Zirui, Zhu Tingting, Ye Huang, Wu Jianbo, Liu Xitao, Luo Junhua
State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian, 350002, P. R. China.
University of the Chinese Academy of Sciences, Beijing, 100049, P. R. China.
Angew Chem Int Ed Engl. 2023 Nov 6;62(45):e202308445. doi: 10.1002/anie.202308445. Epub 2023 Oct 6.
Bulk photovoltaic effect, a promising optoelectronic phenomenon for generating polarized dependent steady-state photocurrent, has been widely applied in various photodetectors. However, incorporating stereochemically active lone pair to construct bulk photovoltage in organic-inorganic hybrid perovskite (OIHP) is still elusive and challenging. Herein, bulk photovoltage (1.2 V) has been successfully achieved by introducing the stereo-chemically active lone pair perovskitizer to construct a polar tri-layered hybrid perovskite, namely, (IBA) MHy Pb Br (1, IBA=iso-butylamine, MHy=methylhydrazine). Strikingly, owning to the promising bulk photovoltage, 1-based detectors exhibit an ultra-highly sensitive polarized photodetection (polarization ratio of up to 24.6) under self-powered mode. This ratio surpasses all the reported two-dimension OIHP single-crystal photodetectors. In addition, detectors exhibit outstanding responsivity (≈200 mA W ) and detectivity (≈2.4×10 Jones). More excitingly, further investigation confirms that lone pair electrons in MHy result in the separation of positive and negative charges to produce directional dipoles, which further directional alignment to generate bulk photovoltage, thereby resulting in polarization-dependent photocurrent. Our findings provide a new demonstration for polar multilayer materials' construction and may open opportunities for a host of high-sensitive polarized photodetection.
体光伏效应是一种很有前景的光电现象,可用于产生偏振相关的稳态光电流,已被广泛应用于各种光电探测器中。然而,在有机-无机杂化钙钛矿(OIHP)中引入立体化学活性孤对电子以构建体光电压仍然难以实现且具有挑战性。在此,通过引入立体化学活性孤对钙钛矿化剂构建极性三层杂化钙钛矿,即(IBA)MHy Pb Br(1,IBA = 异丁胺,MHy = 甲基肼),成功实现了体光电压(1.2 V)。引人注目的是,由于具有有前景的体光电压,基于1的探测器在自供电模式下表现出超高灵敏度的偏振光探测(偏振比高达24.6)。该比值超过了所有已报道的二维OIHP单晶光电探测器。此外,探测器表现出出色的响应度(≈200 mA W)和探测率(≈2.4×10琼斯)。更令人兴奋的是,进一步研究证实,MHy中的孤对电子导致正负电荷分离以产生定向偶极子,这些偶极子进一步定向排列以产生体光电压,从而导致偏振相关的光电流。我们的发现为极性多层材料的构建提供了新的例证,并可能为一系列高灵敏度偏振光探测带来机遇。