余辉
激发态
光子上转换
红外线的
辐射传输
发光
材料科学
原子物理学
光电子学
化学
光学
物理
天文
伽马射线暴
作者
Yihao Zheng,Haopeng Wei,Ping Liang,Xiaokai Xu,Xingcai Zhang,Huihong Li,Chenlu Zhang,Chaofan Hu,Xuejie Zhang,Bingfu Lei,Wai‐Yeung Wong,Yingliang Liu,Jianle Zhuang
标识
DOI:10.1002/anie.202108696
摘要
Room-temperature afterglow (RTA) materials with long lifetime have shown tremendous application prospects in many fields. However, there is no general design strategy to construct near-infrared (NIR)-excited multicolor RTA materials. Herein, we report a universal approach based on the efficient radiative energy transfer that supports the reabsorption from upconversion materials (UMs) to carbon dots-based RTA materials (CDAMs). Thus, the afterglow emission (blue, cyan, green, and orange) of various CDAMs can be activated by UMs under the NIR continuous-wave laser excitation. The efficient radiative energy transfer ensured the persistent multicolor afterglow up to 7 s, 6 s, 5 s, and 0.5 s by naked eyes, respectively. Given the unusual afterglow properties, we demonstrated preliminary applications in fingerprint recognition and information security. This work provides a new avenue for the activation of NIR-excited afterglow in CDAMs and will greatly expand the applications of RTA materials.
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