Yang Daiyue, Cheung Ka Man, Gong Qi, Zhang Li, Qiao Lulin, Chen Xiao, Huang Zhifeng, Miao Qian
State Key Laboratory of Antiviral Drugs, Pingyuan Laboratory, School of Chemistry and Chemical Engineering, Henan Normal University, 453007, Xinxiang, Henan, China.
Shanghai-Hong Kong Joint Laboratory in Chemical Synthesis, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 230032, Shanghai, China.
Angew Chem Int Ed Engl. 2024 Jun 3;63(23):e202402756. doi: 10.1002/anie.202402756. Epub 2024 Apr 25.
This article presents trioxa[9]circulene (3) as a novel member of hetero[n]circulenes. Its synthesis began with the synthesis of dimethoxydioxa[8]helicene (5) and used dimethoxydiepoxycyclononatrinaphthalene (4) as a key intermediate, despite the condensation reaction predominantly yielding a 1,4-addition byproduct. The structures and properties of 3-5 were extensively investigated using experimental and computational methods. Analysis of the crystal structures reveal elongation of the internal C-C bonds in the nine-membered ring of 3 compared to 4 and 5. Computational studies demonstrate the remarkable flexibility of trioxa[9]circulene's saddle-shaped polycyclic framework, while the other two compounds are rigid with large racemization barriers. Optically pure forms of 4 and 5 exhibit absorption and luminescence dissymmetry factors on the order of 10, with smaller values observed for compound 4. In the crystal structures, molecules of 3 stack to form columns with remarkable π-π overlap, and the π-π interactions of 4 exhibit short intermolecular C-to-C contacts. Consequently, the solution-processed film of 4 functioned as a p-type organic semiconductor in field effect transistors.
本文介绍了三氧杂[9]环轮烯(3)作为杂[n]环轮烯的一个新成员。其合成始于二甲氧基二氧杂[8]螺旋烯(5)的合成,并使用二甲氧基二环氧环壬三萘(4)作为关键中间体,尽管缩合反应主要产生1,4-加成副产物。使用实验和计算方法对3-5的结构和性质进行了广泛研究。晶体结构分析表明,与4和5相比,3的九元环内的C-C键伸长。计算研究表明,三氧杂[9]环轮烯的鞍形多环骨架具有显著的灵活性,而其他两种化合物则是刚性的,具有较大的外消旋化势垒。光学纯的4和5形式表现出约为10的吸收和发光不对称因子,化合物4的值较小。在晶体结构中,3的分子堆积形成具有显著π-π重叠的柱,4的π-π相互作用表现出短的分子间C到C接触。因此,4的溶液处理薄膜在场效应晶体管中用作p型有机半导体。