Zhang Jin-Jiang, Yang Lin, Liu Fupin, Fu Yubin, Liu Junzhi, Popov Alexey A, Ma Ji, Feng Xinliang
Center for Advancing Electronics Dresden (cfaed) &, Faculty of Chemistry and Food Chemistry, Technische Universität Dresden, Mommsenstrasse 4, 01062, Dresden, Germany.
Center of Spectroelectrochemistry, Leibniz Institute for Solid State and Materials Research (IFW) Dresden, Helmholtzstrasse 20, 01069, Dresden, Germany.
Angew Chem Int Ed Engl. 2021 Dec 1;60(49):25695-25700. doi: 10.1002/anie.202109840. Epub 2021 Nov 5.
A novel synthetic strategy was developed for the construction of difficult-to-access structurally constrained boron-doped polycyclic aromatic hydrocarbons (sc-B-PAHs) via a cascade reaction from the readily available ortho-aryl-substituted diarylalkynes. This domino process involves borylative cyclization, 1,4-boron migration and successive two-fold electrophilic borylation. Two types of sc-B-PAHs bearing B-doped [4]helicene (1 a-1 i) or BN-doped [4]helicene (1 n-1 t) and double [4]helicene (1 u-1 v) are constructed by this cascade reaction. Remarkably, this synthetic strategy is characterized by modest yields (20-50 %) and broad substrate scope (18 examples) with versatile functional group tolerance. The resultant sc-B-PAHs show good stability under ambient conditions and are thoroughly investigated by X-ray crystallography, UV/Vis absorption and fluorescence spectroscopy, and cyclic voltammetry. Interestingly enough, BN-doped [4]helicene 1 o forms a unique alternating π-stacked dimer of enantiomers within a helical columnar superstructure, while BN-doped double [4]helicene 1 u establishes an unprecedented π-stacked trimeric sandwich structure with a rare 2D lamellar π-stacking. The synthetic approach reported herein represents a powerful tool for the rapid generation of novel sc-B-PAHs, which are highly attractive for the elucidation of the structure-property relationship and for potential optoelectronic applications.
通过一种新颖的合成策略,以易于获得的邻芳基取代二芳基炔烃为原料,经串联反应构建了难以合成的结构受限硼掺杂多环芳烃(sc-B-PAHs)。该多米诺过程包括硼氢化环化、1,4-硼迁移和连续的两次亲电硼化反应。通过此串联反应构建了两类含硼掺杂[4]螺烯(1 a - 1 i)或硼氮掺杂[4]螺烯(1 n - 1 t)以及双[4]螺烯(1 u - 1 v)的sc-B-PAHs。值得注意的是,该合成策略具有中等产率(20 - 50%)、广泛的底物范围(18个实例)以及对多种官能团的耐受性。所得的sc-B-PAHs在环境条件下表现出良好的稳定性,并通过X射线晶体学、紫外/可见吸收光谱、荧光光谱和循环伏安法进行了全面研究。有趣的是,硼氮掺杂[4]螺烯1 o在螺旋柱状超结构中形成了一种独特的对映体交替π堆积二聚体,而硼氮掺杂双[4]螺烯1 u则建立了一种前所未有的π堆积三聚体夹心结构,具有罕见的二维层状π堆积。本文报道的合成方法是快速生成新型sc-B-PAHs的有力工具,对于阐明结构-性质关系以及潜在的光电应用具有高度吸引力。