氮化碳
量子产额
量子点
光致发光
氮化物
材料科学
斯托克斯位移
纳米颗粒
碳纤维
石墨氮化碳
纳米技术
胶体
离域电子
化学工程
荧光
无定形碳
化学
光化学
无定形固体
光催化
结晶学
发光
有机化学
光电子学
图层(电子)
复合材料
催化作用
光学
工程类
物理
复合数
作者
Qianling Cui,Jingsan Xu,Xiaoyu Wang,Lidong Li,Markus Antonietti,Menny Shalom
标识
DOI:10.1002/anie.201511217
摘要
Abstract A novel type of quantum dot (Ph‐CN) is manufactured from graphitic carbon nitride by “lining” the carbon nitride structure with phenyl groups through supramolecular preorganization. This approach requires no chemical etching or hydrothermal treatments like other competing nanoparticle syntheses and is easy and safe to use. The Ph‐CN nanoparticles exhibit bright, tunable fluorescence, with a high quantum yield of 48.4 % in aqueous colloidal suspensions. Interestingly, the observed Stokes shift of approximately 200 nm is higher than the maximum values reported for carbon nitride based fluorophores. The high quantum yield and the large Stokes shift are related to the structural surface organization of the phenyl groups, which affects the π‐electron delocalization in the conjugated carbon nitride networks and induces colloidal stability. The remarkable performance of the Ph‐CN nanoparticles in imaging is demonstrated by a simple incubation study with HeLa cells.
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