磷光
纳米团簇
离域电子
发色团
系统间交叉
光化学
荧光
星团(航天器)
化学
羧酸盐
金属
聚合物
异喹啉
化学物理
材料科学
立体化学
有机化学
单重态
激发态
程序设计语言
核物理学
计算机科学
物理
量子力学
作者
Taiqun Yang,Shan Dai,Songqiu Yang,Li Chen,Pengcheng Liu,Kailong Dong,Jiasheng Zhou,Yuting Chen,Haifeng Pan,Sanjun Zhang,Jinquan Chen,Kun Zhang,Peng Wu,Jianhua Xu
标识
DOI:10.1021/acs.jpclett.7b01736
摘要
The fluorescence-phosphorescence dual solvoluminescence (SL) of water-soluble metal nanoclusters (NCs) at room temperature was successfully achieved by a simple solvent-stimulated strategy. The strong interaction between carboxylate ligands and the metal core at the nanoscale interface not only induces rigid conformations of carbonyl groups but also affords a perfect carbonyl cluster that acts as an exact chromophore of metal NCs for aggregation-induced emission (AIE) mechanics. The clustering of carbonyl groups bearing on the polymer backbone chain is promoted by newly discovered n → π* noncovalent interactions. The efficient delocalization of electrons in overlapped C═O double bonds between neighboring carbonyl groups triggered by strong n → π* interactions in the polymer cluster accounts for its unique SL properties, especially the abnormal phosphorescence. This was further confirmed by controlled experiments for the presence of intersystem crossing (ISC) transitions. The results provide novel insights for understanding the complex SL process and open up a new way to study the inherent mechanism of SL by broadening the application of metal NCs.
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