Li Wei, Zhou Wan, Zhou Zhishan, Zhang Haoran, Zhang Xuejie, Zhuang Jianle, Liu Yingliang, Lei Bingfu, Hu Chaofan
Guangdong Provincial Engineering Technology Research Center for Optical Agriculture, College of Materials and Energy, South China Agricultural University, Guangzhou, 510642, P. R. China.
Angew Chem Int Ed Engl. 2019 May 27;58(22):7278-7283. doi: 10.1002/anie.201814629. Epub 2019 Apr 17.
Carbon dots (CDs) have attracted attention in metal-free afterglow materials, but most CDs were heteroatom-containing and the afterglow emissions are still limited to the short-wavelength region. A universal approach to activate the room-temperature phosphorescence (RTP) of both heteroatom-free and heteroatom-containing CDs was developed by one-step heat treatment of CDs and boric acid (BA). The introduction of an electron-withdrawing boron atom in composites can greatly reduce the energy gap between the singlet and triplet state; the formed glassy state can effectively protect the excited triplet states of CDs from nonradiative deactivation. A universal host for embedding CDs to achieve long-lifetime and multi-color (blue, green, green-yellow and orange) RTP via a low cost, quick and facile process was developed. Based on their distinctive RTP performances, the applications of these CD-based RTP materials in information encryption and decryption are also proposed and demonstrated.
碳点(CDs)在无金属余辉材料中受到了关注,但大多数碳点含有杂原子,且余辉发射仍局限于短波长区域。通过对碳点和硼酸(BA)进行一步热处理,开发了一种通用方法来激活不含杂原子和含杂原子碳点的室温磷光(RTP)。复合材料中吸电子硼原子的引入可大大降低单重态和三重态之间的能隙;形成的玻璃态可有效保护碳点的激发三重态免于非辐射失活。开发了一种通用主体,用于通过低成本、快速且简便的过程嵌入碳点以实现长寿命和多色(蓝色、绿色、绿黄色和橙色)室温磷光。基于其独特的室温磷光性能,还提出并展示了这些基于碳点的室温磷光材料在信息加密和解密中的应用。