Li Dong, Liu Xitao, Wu Wentao, Peng Yu, Zhao Sangen, Li Lina, Hong Maochun, Luo Junhua
State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, Fujian, 350002, China.
Fujian Science & Technology Innovation Laboratory for, Optoelectronic Information of China, Fuzhou, Fujian, 350108, P. R. China.
Angew Chem Int Ed Engl. 2021 Apr 6;60(15):8415-8418. doi: 10.1002/anie.202013947. Epub 2021 Mar 3.
Metal-halide perovskites are recently emerging as the promising alternative for CPL detection owing to their CPL-sensitive property induced by chiral organics and efficient charge transport of inorganic frameworks. However, most of these reported chiral perovskites involve high concentrations of toxic Pb which will become the potential bottleneck for their further application. Herein, we successfully developed two lead-free halide double perovskites, [(R)-β-MPA] AgBiI ((R)-β-MPA=(R)-(+)-β-methylphenethylammonium, 1-R), and [(S)-β-MPA] AgBiI ((S)-β-MPA=(S)-(-)-β-methylphenethylammonium, 1-S). Circular dichroism measurements reveal that these perovskites exhibit notable chirality induced by organic cations to distinguish different polarization states of CPL photons. Significantly, they present unique chiral polar photovoltaic, and resulting self-powered CPL detection without an external power source is unprecedentedly achieved. Furthermore, an anisotropy factor up to 0.3 is acquired for the self-powered CPL detection, reaching the highest value among reported chiral perovskites. This work suggests hybrid double perovskites are promising photoelectronic candidates, and provides a new approach for exploring new "green" circularly polarized light-sensitive materials with high performance.
金属卤化物钙钛矿由于其在手性有机化合物诱导下的圆偏振发光(CPL)敏感性以及无机骨架的高效电荷传输特性,最近正成为有前途的CPL检测替代材料。然而,这些已报道的手性钙钛矿大多含有高浓度的有毒铅,这将成为其进一步应用的潜在瓶颈。在此,我们成功开发了两种无铅卤化物双钙钛矿,[(R)-β-MPA] AgBiI((R)-β-MPA = (R)-(+)-β-甲基苯乙铵,1-R)和[(S)-β-MPA] AgBiI((S)-β-MPA = (S)-(-)-β-甲基苯乙铵,1-S)。圆二色性测量表明,这些钙钛矿表现出由有机阳离子诱导的显著手性,以区分CPL光子的不同偏振态。值得注意的是,它们呈现出独特的手性偏振光伏特性,并且前所未有地实现了无需外部电源的自供电CPL检测。此外,自供电CPL检测获得了高达0.3的各向异性因子,达到了已报道手性钙钛矿中的最高值。这项工作表明混合双钙钛矿是有前途的光电子候选材料,并为探索新型高性能“绿色”圆偏振光敏感材料提供了一种新方法。