热电性
极地的
极化(电化学)
化学
卤化物
光电子学
探测器
光电探测器
手性(物理)
圆极化
材料科学
物理
电介质
光学
铁电性
手征异常
物理化学
无机化学
粒子物理学
量子力学
费米子
Nambu–Jona Lasinio模型
微带线
作者
Zhou Li,Chengmin Ji,Yipeng Fan,Tingting Zhu,Shihai You,Jianbo Wu,Ruiqing Li,Zeng‐Kui Zhu,Panpan Yu,Xiaojun Kuang,Junhua Luo
摘要
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, S/R-[(4-aminophenyl)ethylamine]2AgBiI8·0.5H2O, 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 glph 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.
科研通智能强力驱动
Strongly Powered by AbleSci AI