| Literature DB >> 31863545 |
Xi-Sha Zhang1, Yan-Ying Huang1,2, Jing Zhang1,2, Wei Meng1, Qian Peng1, Ruirui Kong1, Zhenwei Xiao1, Jie Liu1, Miaofei Huang1,2, Yuanping Yi1, Liangliang Chen1,2, Qingrui Fan1, Gaobo Lin1, Zitong Liu1, Guanxin Zhang1, Lang Jiang1, Deqing Zhang1,2.
Abstract
Polycyclic aromatic hydrocarbons with hexagons/pentagons or hexagons/heptagons have been intensively investigated in recent years, but those with simultaneous presence of hexagons, pentagons and heptagons remain rare. In this paper, we report dicyclohepta[ijkl,uvwx]rubicene (DHR), a non-benzenoid isomer of dibenzo[bc,kl]coronene with two pentagons and two heptagons. We developed an efficient and scalable synthetic method for DHR by using Scholl reaction and dehydrogenation. Crystal structure of DHR shows that the benzenoid rings, two pentagons and two heptagons are coplanar. The bond lengths analysis and the ICSS(1)zz and LOL-π calculations indicate that the incorporation of two formal azulene moieties has an effect on the conjugated structure. The π-electrons of benzenoid and pentagon rings are more delocalized. Cyclic voltammetry studies indicate that DHR shows multiple oxidation and reduction potentials. Interestingly, DHR exhibits unusual S0 to S2 absorption and abnormal anti-Kasha S2 to S0 emission. Moreover, crystals of DHR exhibit semiconducting behaviour with hole mobility up to 0.082 cm2 V-1 s-1 .Entities:
Keywords: Scholl reaction; azulene; dicycloheptarubicene; nanographene; organic semiconductor
Year: 2020 PMID: 31863545 DOI: 10.1002/anie.201914416
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336