手性(物理)
发光
超分子手性
材料科学
偶氮苯
共发射极
液晶
圆极化
光电子学
聚合物
光化学
纳米技术
超分子化学
光学
结晶学
化学
物理
晶体结构
微带线
手征对称破缺
量子力学
Nambu–Jona Lasinio模型
复合材料
夸克
作者
Wenye Sun,Bing Tian,Bang An,Rui Teng,Mingcong Xu,Chunhui Ma,Zhijun Chen,Haipeng Yu,Jian Li,Wei Li,Siqi Huan,Shouxin Liu,Orlando J. Rojas
摘要
ABSTRACT Circularly polarized luminescent materials find extensive applications in 3D displays, information encryption, and photoinduced supramolecular chirality. However, controlling the handedness of circularly polarized luminescence remains a significant challenge in advancing optical technologies. In this study, we present a Janus circularly polarized light emitter comprising a fluorescent film combined with chiral nematic cellulose with switchable chirality. The emitter achieves maximum luminescence dissymmetry factors (0.28 and −0.65) through mode switching. In addition, we show the emitter's versatility in inducing chiral helices in azobenzene polymers with varying polar groups, resulting in significant chiral signals. Importantly, the chirality of these polymers can be switched by altering the luminescence mode of the emitter. These results are expected to facilitate the efficient design of chiral luminescent materials and photoinduction devices.
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