Yuan Liuzhong, Liu Yujia, Sun Wenting, Ye Kaiqi, Dou Chuandong, Wang Yue
State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, P. R. China.
Dalton Trans. 2022 Aug 9;51(31):11892-11898. doi: 10.1039/d2dt01889f.
Incorporation of heteroatoms into polyarenes has been developed as an effective approach to alter their intrinsic structures and properties. Herein, we designed and synthesized two PO-containing dibenzopentaarene isomers (5a and 5b) and studied their structures and properties, along with those of dibenzopentaarenes containing six-membered Si- and B-heterocycles (3 and 4). These heterocyclic polyarenes have similar frameworks to well-known heptazethrene, and thus can be regarded as members of the heteroatom-doped zethrene system. The heterocycles greatly affect not only the molecular and packing structures but also the electronic structures and properties. Notably, while compounds 3 and 4 adopt almost planar geometries, 5a possesses a clearly curved conformation, leading to its brick-type slipped and dense π-π stacking mode. Moreover, the electron-withdrawing PO groups endow 5a and 5b with simultaneously lowered lowest unoccupied molecular orbital (LUMO)/highest occupied molecular orbital (HOMO) levels, whereas the p-π conjugation of the B atoms in 4 leads to its smaller energy gap and thus remarkably red-shifted absorption and fluorescence bands by over 80 nm, though all of these molecules possess similar closed-shell structures. This study thus deepens the understanding of heteroatom-doping effects, which may be expanded to develop other heteroatom-doped zethrene materials.
将杂原子引入聚芳烃已被开发为一种改变其固有结构和性质的有效方法。在此,我们设计并合成了两种含PO的二苯并戊芳烃异构体(5a和5b),并研究了它们以及含六元Si-和B-杂环的二苯并戊芳烃(3和4)的结构和性质。这些杂环聚芳烃具有与著名的庚氮杂苯相似的骨架,因此可被视为杂原子掺杂的氮杂苯体系的成员。杂环不仅极大地影响分子和堆积结构,还影响电子结构和性质。值得注意的是,虽然化合物3和4几乎呈平面几何形状,但5a具有明显的弯曲构象,导致其呈砖型滑移且紧密的π-π堆积模式。此外,吸电子的PO基团使5a和5b的最低未占分子轨道(LUMO)/最高占分子轨道(HOMO)水平同时降低,而4中B原子的p-π共轭导致其能隙较小,因此吸收和荧光带显著红移超过80 nm,尽管所有这些分子都具有相似的闭壳结构。因此,这项研究加深了对杂原子掺杂效应的理解,这可能会被扩展以开发其他杂原子掺杂的氮杂苯材料。