荧光
锌
水溶液
磷光
材料科学
发光
热液循环
兴奋剂
光化学
荧光粉
水热合成
化学
量子产额
化学工程
物理化学
光电子学
有机化学
工程类
物理
量子力学
作者
Mingyue Cui,Manjing Li,Jinhua Wang,Runzhi Chen,Zhaojian Xu,Jingyang Wang,Junfei Han,Guyue Hu,Rong Sun,Xin Jiang,Bin Song,Yao He
标识
DOI:10.1002/ange.202103200
摘要
Abstract Fluorescence and phosphorescence are known as two kinds of fundamental optical signals, which have been used for myriad applications. To date, simultaneous activation of stable fluorescence and long‐lived room‐temperature phosphorescence (RTP) emission in the aqueous phase remains a big challenge. We prepare zinc‐doped silica nanospheres (Zn@SiNSs) with fluorescence and RTP properties using a facile hydrothermal synthetic strategy. For the as‐prepared Zn@SiNSs, the recombination of electrons and holes in defects and defect‐stabilized excitons derived from oxygen vacancy/C=N bonds lead to the production of stable fluorescence and long‐lived RTP (emission lasting for ≈9 s, quantum yield (QY): ≈33.6 %, RTP lifetime: ≈236 ms). The internal Si−O bonded networks and hydrophilic surface in Zn@SiNSs can reduce nonradiative decay to form self‐protective RTP, and also provide high water solubility, excellent pH‐ and photostability.
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