磷光
超分子化学
光致发光
光化学
罗丹明B
J-骨料
化学
两亲性
尼罗河红
罗丹明
能量转移
材料科学
光电子学
分子
荧光
化学物理
光学
有机化学
共聚物
催化作用
光催化
物理
聚合物
作者
Man Huo,Xianyin Dai,Yu Liu
标识
DOI:10.1002/ange.202113577
摘要
Abstract An ultrahigh supramolecular cascaded phosphorescence‐capturing aggregate was constructed by multivalent co‐assembly of cucurbit[7]uril (CB[7]) and amphipathic sulfonatocalix[4]arene (SC4AD). The initial dibromophthalimide derivative (G) generated a weak phosphorescent emission at 505 nm by host–guest interaction with CB[7], which further assembled with SC4AD to form homogeneously spherical nanoparticles with a dramatic enhancement of both phosphorescence lifetime to 1.13 ms and emission intensity by 40‐fold. Notably, this G⊂CB[7]@SC4AD aggregate exhibited efficient phosphorescence energy transfer to Rhodamine B (RhB) and benzothiadiazole (DBT) with high efficiency (ϕ ET ) of 84.4 % and 76.3 % and an antenna effect (AE) of 289.4 and 119.5, respectively, and then each of these can function as a bridge to further transfer their energy to second near‐IR acceptors Cy5 or Nile blue (NiB) to achieve cascaded phosphorescence energy transfer. The final aggregate with long‐range effect from 425 nm to 800 nm and long‐lived photoluminescence was further employed as an imaging agent for multicolour cell labeling.
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