发光
量子产额
白光
材料科学
聚合物
光电子学
圆极化
光子学
纳米技术
光学
荧光
物理
复合材料
微带线
作者
Yi Ru,Laizhi Sui,Haoqiang Song,Xingjiang Liu,Zhiyong Tang,Shuang‐Quan Zang,Bai Yang,Siyu Lu
标识
DOI:10.1002/anie.202103336
摘要
Abstract Light‐emitting chiral carbonized polymer dots (Ch‐CPDs) are attracting great interest because of their extraordinary photonic properties, but modulating their band‐gap emission, especially at long wavelength, and maintaining their chiral structure to achieve multicolor, high‐emission Ch‐CPDs remains challenging. Reported here for the first time is the synthesis of red‐ and multicolor‐emitting Ch‐CPDs using the common precursors L ‐/ D ‐tryptophan and o ‐phenylenediamine, and a solvothermal approach at one temperature. The quantum yield of the Ch‐CPDs was between 31 % and 54 %. Supramolecular self‐assembly provided multicolor‐emitting Ch‐CPDs showing novel circularly polarized luminescence, with the highest dissymmetric factor (g lum ) of 1×10 −2 . Importantly, circularly polarized white‐emitting CPDs were fabricated for the first time by tuning the mixing ratio of the three colored Ch‐CPDs in a gel. This strategy affords exciting opportunities for designing functional chiroptical materials.
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