Yoshida Yukihiro, Isomura Kazuhide, Kishida Hideo, Kumagai Yoshihide, Mizuno Motohiro, Sakata Masafumi, Koretsune Takashi, Nakano Yoshiaki, Yamochi Hideki, Maesato Mitsuhiko, Saito Gunzi
Faculty of Agriculture, Meijo University, Nagoya, 468-8502, Japan.
Department of Applied Physics, Nagoya University, Nagoya, 464-8603, Japan.
Chemistry. 2016 Apr 18;22(17):6023-30. doi: 10.1002/chem.201505023. Epub 2016 Mar 15.
Coronene, which is the smallest D6h -symmetric polycyclic aromatic hydrocarbon, attracts particular attention as a basic component of electronic materials because it is the smallest fragment of graphene. However, carrier generation by physical methods, such as photo- or electric field-effect, has barely been studied, primarily because of the poor π-conduction pathway in pristine coronene solid. In this work we have developed unprecedented π-stacking columns of cationic coronene molecules by electrochemical hole-doping with polyoxometallate dianions. The face-to-face π-π interactions as well as the partially charged state lead to electrical conductivity at room temperature of up to 3 S cm(-1) , which is more than 10 orders of magnitude higher than that of pristine coronene solid. Additionally, the robust π-π interactions strongly suppress the in-plane rotation of the coronene molecules, which has allowed the first direct observation of the static Jahn-Teller distortion of cationic coronene molecules.
蒄是最小的具有D6h对称性的多环芳烃,作为电子材料的基本成分备受关注,因为它是石墨烯的最小片段。然而,通过物理方法(如光或电场效应)产生载流子的研究几乎没有,主要原因是原始蒄固体中的π传导路径较差。在这项工作中,我们通过用多金属氧酸盐二价阴离子进行电化学空穴掺杂,开发出了前所未有的阳离子蒄分子的π堆积柱。面对面的π-π相互作用以及部分带电状态导致室温电导率高达3 S cm-1,这比原始蒄固体高出10多个数量级。此外,强大的π-π相互作用强烈抑制了蒄分子的面内旋转,这使得首次直接观察到阳离子蒄分子的静态 Jahn-Teller 畸变成为可能。