镧系元素
发光
分子
猝灭(荧光)
波长
化学
光化学
激发波长
聚集诱导发射
线性关系
材料科学
光电子学
荧光
有机化学
光学
离子
数学
统计
物理
作者
Yan Zhang,Peng-Chong Jiao,Hai‐Bing Xu,Mingjing Tang,Xiaoping Yang,Shaoming Huang,Jianguo Deng
摘要
Abstract Analagous to a long-ranged rocket equipped with multi-stage engines, a luminescent compound with consistent emission signals across a large range of concentrations from two stages of sensitizers can be designed. In this approach, ACQ, aggregation-caused quenching effect of sensitizers, would stimulate lanthanide emission below 10 −4 M and then at concentrations higher than 10 −3 M, the “aggregation-induced emission” (AIE) effect of luminophores would be activated with the next set of sensitizers for lanthanide emission. Simultaneously, the concentration of the molecules could be monitored digitally by the maximal excitation wavelengths, due to the good linear relationship between the maximal excitation wavelengths and the concentrations {lg( M )}. This model, wherein molecules are assembled with two stages (both AIE and ACQ effect) of sensitizers, may provide a practicable strategy for design and construction of smart lanthanide bioprobes, which are suitable in complicated bioassay systems in which concentration is variable.
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