Lión-Villar Juan, Fernández-García Jesús M, Medina Rivero Samara, Perles Josefina, Wu Shaofei, Aranda Daniel, Wu Jishan, Seki Shu, Casado Juan, Martín Nazario
Departamento de Química Orgánica I, Facultad de Ciencias Químicas, Universidad Complutense de Madrid, Madrid, Spain.
Departamento de Química-Física, Facultad de Ciencias, Universidad de Málaga, Málaga, Spain.
Nat Chem. 2025 Apr 30. doi: 10.1038/s41557-025-01810-2.
Molecular nanographenes (NGs) are nanoscale graphene fragments obtained by organic synthetic protocols. Here we report the bottom-up synthesis of two spiro-NGs formed by two substituted hexa-peri-hexabenzocoronenes (HBCs), spiro-NG and F-spiro-NG. The X-ray crystal structure of the deca-tert-butyl-functionalized spiro-NG shows a bilayer disposition of the HBCs in face-to-face contact. By contrast, F-spiro-NG, which features tert-butyl substituents on one HBC unit, and fluorine on the other HBC unit, is an electron donor-acceptor bilayer NG. The structural assembly of the donor and acceptor graphenic layers enables an electron-transfer process that leads to the formation of a zwitterionic open shell, paramagnetic species constituted by a radical cation and a radical anion located in the donor and the acceptor HBCs, respectively. Magnetic and spectroelectrochemical experiments, together with theoretical calculations, support the persistent/dominant charge-separated nature of F-spiro-NG. Furthermore, photoconductivity measurements show a significant increase of the charge carrier mobility in the case of F-spiro-NG (Σμ = 6 cm V s) compared with spiro-NG.
分子纳米石墨烯(NGs)是通过有机合成方法获得的纳米级石墨烯片段。在此,我们报告了由两个取代的六并六苯并蔻(HBCs)形成的两种螺环-NGs,即螺环-NG和F-螺环-NG的自下而上合成。十叔丁基官能化螺环-NG的X射线晶体结构显示HBCs以面对面接触的方式形成双层排列。相比之下,F-螺环-NG在一个HBC单元上具有叔丁基取代基,在另一个HBC单元上具有氟,是一种电子供体-受体双层NG。供体和受体石墨烯层的结构组装实现了一个电子转移过程,导致形成一个两性离子开壳层顺磁物种,该物种分别由位于供体和受体HBCs中的一个自由基阳离子和一个自由基阴离子组成。磁性和光谱电化学实验以及理论计算支持了F-螺环-NG的持久/主导电荷分离性质。此外,光电导率测量表明,与螺环-NG相比,F-螺环-NG(Σμ = 6 cm V s)的电荷载流子迁移率显著增加。