Li Zhou, Ji Chengmin, Fan Yipeng, Zhu Tingting, You Shihai, Wu Jianbo, Li Ruiqing, Zhu Zeng-Kui, Yu Panpan, Kuang Xiaojun, 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.
Guangxi Key Laboratory of Electrochemical and Magnetochemical Functional Materials, College of Chemistry and Bioengineering, Guilin University of Technology, Guilin 541006, P. R. China.
J Am Chem Soc. 2023 Nov 22;145(46):25134-25142. doi: 10.1021/jacs.3c05080. Epub 2023 Nov 13.
Chiral hybrid perovskites combine the advantages of chiral materials and halide perovskites, offering an ideal platform for the design of circularly polarized light (CPL) detectors. The pyro-phototronic effect, as a special mechanism of the photoexcited pyroelectric signal, can significantly improve the performance of photodetectors, whereas it remains a great challenge to achieve pyroelectricity-based CPL detection. In this work, the chiroptical phenomena and the pyro-phototronic effect are combined in chiral-polar perovskites to achieve unprecedented pyroelectric-based CPL detection. Two novel two-dimensional (2D) lead-free chiral-polar double perovskites, /-[(4-aminophenyl)ethylamine]AgBiI·0.5HO, are successfully designed and synthesized by introducing chiral organic ligands into metal halide frameworks. Strikingly, the photoresponse is substantially boosted with the support of the pyro-phototronic effect, showing an increased pyro-phototronic current that is 40 times greater than the photovoltaic current. Furthermore, the pyroelectric-based detector possesses excellent CPL detection capacity to distinguish different polarization states of CPL photons, which achieve an impressive of up to 0.27 at zero bias. This study provides a brand new process for CPL detection by utilizing the pyro-phototronic effect in chiral-polar perovskites, which opens a new avenue for chiral materials in optoelectronic applications.
手性杂化钙钛矿结合了手性材料和卤化物钙钛矿的优点,为圆偏振光(CPL)探测器的设计提供了一个理想平台。热光电子效应作为光激发热释电信号的一种特殊机制,能显著提高光电探测器的性能,然而实现基于热释电的CPL探测仍然是一个巨大挑战。在这项工作中,手性光现象和热光电子效应在手性极性钙钛矿中相结合,以实现前所未有的基于热释电的CPL探测。通过将手性有机配体引入金属卤化物框架中,成功设计并合成了两种新型二维(2D)无铅手性极性双钙钛矿,即/ - [(4 - 氨基苯基)乙胺]AgBiI·0.5H₂O。引人注目的是,在热光电子效应的支持下,光响应得到大幅增强,热光电流增加,比光伏电流大40倍。此外,基于热释电的探测器具有出色的CPL探测能力,能够区分CPL光子的不同偏振态,在零偏压下达到高达0.27的令人印象深刻的值。这项研究利用手性极性钙钛矿中的热光电子效应为CPL探测提供了一种全新的方法,为手性材料在光电子应用中开辟了一条新途径。