Bussolotti F, Yang J, Yamaguchi T, Yonezawa K, Sato K, Matsunami M, Tanaka K, Nakayama Y, Ishii H, Ueno N, Kera S
Institute for Molecular Science, Myodaiji, Okazaki, 444-8585, Japan.
Institute of Materials Research and Engineering (IMRE), 2 Fusionopolis Way, Innovis, Singapore, #08-03, Singapore.
Nat Commun. 2017 Aug 2;8(1):173. doi: 10.1038/s41467-017-00241-z.
The dynamic interaction between the traveling charges and the molecular vibrations is critical for the charge transport in organic semiconductors. However, a direct evidence of the expected impact of the charge-phonon coupling on the band dispersion of organic semiconductors is yet to be provided. Here, we report on the electronic properties of rubrene single crystal as investigated by angle resolved ultraviolet photoelectron spectroscopy. A gap opening and kink-like features in the rubrene electronic band dispersion are observed. In particular, the latter results in a large enhancement of the hole effective mass (> 1.4), well above the limit of the theoretical estimations. The results are consistent with the expected modifications of the band structures in organic semiconductors as introduced by hole-phonon coupling effects and represent an important experimental step toward the understanding of the charge localization phenomena in organic materials.The charge transport properties in organic semiconductors are affected by the impact of molecular vibrations, yet it has been challenging to quantify them to date. Here, Bussolotti et al. provide direct experimental evidence on the band dispersion modified by molecular vibrations in a rubrene single crystal.
移动电荷与分子振动之间的动态相互作用对于有机半导体中的电荷传输至关重要。然而,电荷 - 声子耦合对有机半导体能带色散预期影响的直接证据尚未得到。在此,我们报告通过角分辨紫外光电子能谱研究的红荧烯单晶的电子性质。在红荧烯电子能带色散中观察到能隙打开和类似扭折的特征。特别是,后者导致空穴有效质量大幅增强(> 1.4),远高于理论估计的极限。这些结果与空穴 - 声子耦合效应引入的有机半导体能带结构的预期变化一致,并且代表了朝着理解有机材料中电荷局域化现象迈出的重要实验步骤。有机半导体中的电荷传输性质受分子振动影响,但迄今为止对其进行量化一直具有挑战性。在此,布索洛蒂等人提供了关于红荧烯单晶中分子振动对能带色散影响的直接实验证据。