Wang Jiaqiang, Wang Can, Gong Yanbin, Liao Qiuyan, Han Mengmeng, Jiang Tianjiao, Dang Qianxi, Li Yaqin, Li Qianqian, Li Zhen
Department of Chemistry, Wuhan University, Wuhan, 430072, China.
Institute of Molecular Aggregation Science, Tianjin University, Tianjin, 300072, China.
Angew Chem Int Ed Engl. 2018 Dec 17;57(51):16821-16826. doi: 10.1002/anie.201811660. Epub 2018 Nov 16.
Organic tribophosphorescence materials are rarely reported and the introduction of Br atoms may be a practical way to design such materials. Here four bromine-substituted fluorene-based derivatives are presented and BrFlu-CBr, having fluorescence-phosphorescence dual-emission induced not only by UV light but also by mechanical stimulus, manifests the highest phosphorescence efficiency of 4.56 % upon photoirradiation. During the grinding process, three different triboluminescent spectra were identified. Upon introduction of a mechanical stimulus, the triboluminescence emission is cyan, whereas after an extended period it changed to blue. After removing the mechanical stimulus, green-white phosphorescent emission was observed. Careful research on single-crystal structures and theoretical calculations demonstrate that strong Br⋅⋅⋅Br interactions are vital to facilitate spin-orbit coupling and promote intersystem crossing, thus generating the unique properties.
有机三磷光材料鲜有报道,引入溴原子可能是设计此类材料的一种可行方法。本文展示了四种溴取代芴基衍生物,其中BrFlu-CBr不仅在紫外光照射下,而且在机械刺激下都能产生荧光-磷光双发射,在光照射下表现出最高4.56%的磷光效率。在研磨过程中,识别出三种不同的摩擦发光光谱。引入机械刺激时,摩擦发光发射为青色,而长时间后变为蓝色。去除机械刺激后,观察到绿白色磷光发射。对单晶结构的仔细研究和理论计算表明,强Br⋅⋅⋅Br相互作用对于促进自旋-轨道耦合和促进系间窜越至关重要,从而产生独特的性质。