Li Qing, Li Chun-Min, Xu Hong-Liang, Su Zhong-Min
Department of Chemistry, Faculty of Science, Yanbian University, Yanji, Jilin, 133002, China.
Institute of Functional Material Chemistry, Faculty of Chemistry, Northeast Normal University, Changchun, Jilin, 130024, China.
J Mol Model. 2017 Aug;23(8):231. doi: 10.1007/s00894-017-3394-9. Epub 2017 Jul 19.
A graphene nanoflake (GNF) is a polycyclic aromatic hydrocarbon (PAH) with a huge two-dimensional π-conjugated carbon material in which a central benzene ring is surrounded by identical benzene-type rings through infinite alternant method. In this paper, we explore the structure-aromaticity relationship of the GNFs and the GNFs with hollow sites (GNFHs) by combining the nucleus-independent chemical shifts (NICS) with the anisotropy of the current induced density (ACID). Firstly, the benzene is a typical aromatic molecule (NICS = -9.671 ppm), GNFs 1-6 is darned with benzene and the corresponding GNFHs 1'-6'. Secondly, the NICS values of GNFs 1-6 alternately vary: -1.214 (1) > -13.847 (2) < -2.662 (3) > -14.530 (4) < -3.932 (5) > -13.978 (6) ppm, the GNFs (2, 4, 6) with even fragments of annulene have larger aromaticity than that of GNFs (1, 3, 5) with odd fragments of annulene. Significantly, the NICS values of GNFs 1-6 can also be fragment analyzed by the NICS values and ACID of benzene and corresponding GNFHs 1'-6'. The NICS values for GNFs (2, 4, 6) can be roughly estimated by the NICS value of benzene minus the NICS value of the GNFHs (2', 4', 6'), respectively. The NICS values for GNFs (1, 3, 5) can be roughly estimated by the NICS value of the GNFHs (1', 3', 5') minus the NICS value of benzene, respectively. We hope that the present work can provide a simple and reliable method for the rational design of the GNF with aromaticity, which may be used to understand the origin of the graphene nanoflake aromatic properties.
石墨烯纳米片(GNF)是一种多环芳烃(PAH),是一种巨大的二维π共轭碳材料,其中中心苯环通过无限交替的方式被相同的苯型环包围。在本文中,我们通过结合核独立化学位移(NICS)和电流诱导密度的各向异性(ACID)来探索GNF和具有中空位点的GNF(GNFH)的结构-芳香性之间的关系。首先,苯是典型的芳香分子(NICS = -9.671 ppm),GNFs 1-6由苯修饰得到相应的GNFHs 1'-6'。其次,GNFs 1-6的NICS值交替变化:-1.214(1)> -13.847(2)< -2.662(3)> -14.530(4)< -3.932(5)> -13.978(6)ppm,具有偶数片段轮烯的GNFs(2,4,6)比具有奇数片段轮烯的GNFs(1,3,5)具有更大的芳香性。值得注意的是,GNFs 1-6的NICS值也可以通过苯和相应的GNFHs 1'-6'的NICS值和ACID进行片段分析。GNFs(2,4,6)的NICS值可以分别通过苯的NICS值减去GNFHs(2',4',6')的NICS值粗略估计。GNFs(1,3,5)的NICS值可以分别通过GNFHs(1',3',5')的NICS值减去苯的NICS值粗略估计。我们希望目前的工作能够为合理设计具有芳香性的GNF提供一种简单可靠的方法,这可能有助于理解石墨烯纳米片芳香性质的起源。