余辉
材料科学
纳米材料
水下
碳纤维
量子产额
纳米技术
荧光
纳米复合材料
卤化物
磷光
量子点
光电子学
热液循环
发光
碳量子点
纳米颗粒
兴奋剂
原位
波长
化学工程
光致发光
产量(工程)
杂质
作者
Tengyang Cao,Lei Chen,Helang Li,Zinan Jiang,J G Li,Jijun Huang,Caiqi Wang
标识
DOI:10.1002/lpor.202502697
摘要
ABSTRACT Carbon dot (CD)‐based afterglow materials have recently proliferated in various areas, but color‐tunable, carbon dot‐based underwater afterglow nanomaterials remain largely unexplored. Moreover, the existing synthesis methods are generally complex, and there has been a notable lack of efficient, one‐step preparation techniques. We present a simple one‐step hydrothermal method to synthesize CD‐based nanomaterials that exhibit stable dual‐mode underwater emission comprising room‐temperature phosphorescence (RTP) and thermally activated delayed fluorescence (TADF). Using 3‐aminopropyltriethoxysilane, a densely cross‐linked SiO 2 matrix forms, embedding in situ generated CDs. This confined structure stabilizes triplet excitons, enabling an ultra‐long underwater afterglow lifetime of 1218 ms and a quantum yield of 46.7%. By doping with halide ions, the afterglow wavelength was tuned from 402 to 560 nm, achieving multicolor emission. The nanocomposites maintain stable afterglow performance in harsh conditions, including strong acids, alkalis, oxidants, and polar solvents. Given its exceptional stability and multicolor afterglow, the material was used to construct a sophisticated triple anti‐counterfeiting system, demonstrating great potential for advanced information encryption.
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