Wang Yafei, Liu Wanhui, Deng Jiyong, Xie Guohua, Liao Yuanwei, Qu Zuoming, Tan Hua, Liu Yu, Zhu Weiguo
College of Chemistry, Xiangtan University, Xiangtan City, Hunan, 411105, P.R. China.
School of Chemistry and Chemical Engineering, Hunan Institute of Engineering, Xiangtan, 411104, P.R. China.
Chem Asian J. 2016 Sep 20;11(18):2555-63. doi: 10.1002/asia.201600727. Epub 2016 Sep 8.
Pi-conjugated organic molecules featuring the donor-bridge-acceptor (D-π-A) structure have been widely used in semiconducting materials owing to their rigid structure, good thermal stability, excellent charge transfer, and high emission efficiency. To investigate the effect of the D-π-A molecular structure on the photophysical properties, in this contribution, three star-shaped D-π-A isomers based on the 2,4,6-triphenyl-1,3,5-triazine, spirofluorene, and triphenylamine moieties, that is, p-TFTPA, mp-TFTPA, and m-TFTPA, were synthesized by elaborately engineering the interconnecting position in the building-block units. The optophysical properties of these compounds were systematically explored by experiments and theory calculations. Definitively, changing the interconnecting position in these molecules played a significant role in the degree of π conjugation, which resulted in tunable emission colors from deep blue to green. Moreover, these isomers were employed as emissive dopants in organic light-emitting diodes. The highest external quantum efficiency of 2.3 % and current efficiency of 6.2 cd A(-1) were achieved by using the p-TFTPA based device. This research demonstrates a feasible way to realize blue emitters by engineering D-π-A conjugation.
具有供体-桥-受体(D-π-A)结构的π共轭有机分子,因其结构刚性、热稳定性好、电荷转移优异以及发射效率高,已被广泛应用于半导体材料中。为了研究D-π-A分子结构对光物理性质的影响,在本论文中,通过精心设计构建单元中的连接位置,合成了三种基于2,4,6-三苯基-1,3,5-三嗪、螺芴和三苯胺部分的星形D-π-A异构体,即p-TFTPA、mp-TFTPA和m-TFTPA。通过实验和理论计算系统地探索了这些化合物的光物理性质。确切地说,改变这些分子中的连接位置对π共轭程度起着重要作用,这导致了从深蓝色到绿色的可调发射颜色。此外,这些异构体被用作有机发光二极管中的发光掺杂剂。基于p-TFTPA的器件实现了2.3%的最高外量子效率和6.2 cd A⁻¹的电流效率。本研究展示了一种通过设计D-π-A共轭来实现蓝色发射体的可行方法。