自旋电子学
圆极化
光致发光
材料科学
光电子学
极化(电化学)
发光
激发
异质结
激发波长
波长
化学
凝聚态物理
光学
物理
物理化学
铁磁性
微带线
量子力学
作者
Guixiang Zhan,Junran Zhang,Linghai Zhang,Zhenwei Ou,Hongbin Yang,Yuchi Qian,Xu Zhang,Ziyue Xing,Le Zhang,Congzhou Li,Jingxian Zhong,Jiaxiao Yuan,Yaoyao Cao,Dawei Zhou,Xiaolong Chen,Hongchao Ma,Xianlin Song,Chenyang Zha,Xiao Huang,Jianpu Wang,Ti Wang,Wei Huang,Lin Wang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2022-05-04
卷期号:22 (10): 3961-3968
被引量:16
标识
DOI:10.1021/acs.nanolett.2c00482
摘要
Circularly polarized light (CPL) is essential for optoelectronic and chiro-spintronic applications. Hybrid perovskites, as star optoelectronic materials, have demonstrated CPL activity, which is, however, mostly limited to chiral perovskites. Here, we develop a simple, general, and efficient strategy to stimulate CPL activity in achiral perovskites, which possess rich species, efficient luminescence, and tunable bandgaps. With the formation of van der Waals heterojunctions between chiral and achiral perovskites, a nonequilibrium spin population and thus CPL activity are realized in achiral perovskites by receiving spin-polarized electrons from chiral perovskites. The polarization degree of room-temperature CPL in achiral perovskites is at least one order of magnitude higher than in chiral ones. The CPL polarization degree and emission wavelengths of achiral perovskites can be flexibly designed by tuning chemical compositions, operating temperature, or excitation wavelengths. We anticipate that unlimited types of achiral perovskites can be endowed with CPL activity, benefiting their applications in integrated CPL sources and detectors.
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