Zhou Jiadong, Zhang Wenqiang, Jiang Xiao-Fang, Wang Cong, Zhou Xuehong, Xu Biao, Liu Linlin, Xie Zengqi, Ma Yuguang
Institute of Polymer Optoelectronic Materials and Devices, State Key Laboratory of Luminescent Materials and Devices, South China University of Technology , Guangzhou 510640, People's Republic of China.
J Phys Chem Lett. 2018 Feb 1;9(3):596-600. doi: 10.1021/acs.jpclett.7b03251. Epub 2018 Jan 19.
A single crystal of N,N'-bis(4-methoxybenzyl)perylene-3,4,9,10-bis(dicarboximide) (mb-PBI) that possesses novel magic-angle stacking (M-type stacking) and strong intermolecular π-π interaction is achieved by physical vapor transport (PVT), which shows attractive optoelectronic functions such as efficient NIR emission and high electron mobility. In this special M-type staking, the strong Frenkel/CT mixing state promotes fluorescence and, importantly, the elimination of long-distance Förster resonance energy transfer enables the minimization of the possible fluorescence quenching, which ensure the highly efficient emission. Moreover, the strong π-π interaction elongates the "supramolecular conjugation" to reduce the energy gap and also benefits the electron mobility of the crystal. The experimental results clearly indicate that M-type staking is a novel approach to optimize the optoelectronic functions of organic semiconducting materials.
通过物理气相传输(PVT)获得了具有新型魔角堆积(M型堆积)和强分子间π-π相互作用的N,N'-双(4-甲氧基苄基)苝-3,4,9,10-双(二甲酰亚胺)(mb-PBI)单晶,该单晶展现出诸如高效近红外发射和高电子迁移率等有吸引力的光电功能。在这种特殊的M型堆积中,强弗伦克尔/电荷转移混合态促进了荧光,重要的是,长距离福斯特共振能量转移的消除使可能的荧光猝灭最小化,这确保了高效发射。此外,强π-π相互作用延长了“超分子共轭”以减小能隙,并且也有利于晶体的电子迁移率。实验结果清楚地表明,M型堆积是优化有机半导体材料光电功能的一种新方法。