Département de Chimie, Centre for Green Chemistry and Catalysis, Université de Montréal, CP 6128 Station Downtown, Montréal, Québec H3C 3J7 (Canada).
Chemistry. 2013 Nov 25;19(48):16295-302. doi: 10.1002/chem.201301431. Epub 2013 Oct 21.
Synthesis of helically chiral aromatics resulting from fusion of pyrene and [4]- or [5]helicene has been accomplished using photoredox catalysis employing a Cu-based sensitizer as the key step. Photocyclisation experiments for the synthesis of the target compounds were carried out in batch and using continuous flow strategies. The solid-state structures, UV/Vis absorption spectra and fluorescence spectra of the pyrene-helicene hybrids were investigated and compared to that of the parent [5]helicene to discern the effects of merging a pyrene moiety within a helicene skeleton. The studies demonstrated that pyrene-helicene hybrids adopt co-planar or stacked arrangements in the solid state, in contrast to the solid-state structure of the parent [5]helicene. The UV/Vis and fluorescence spectra of the pyrene-helicene hybrids exhibited strong red-shifts when compared to the parent [5]helicene. DFT calculations suggest that the strategy of extending the π surface in the y axis of the helicenes increased their HOMO levels while also decreasing their LUMO levels, resulting in significantly reduced band gaps.
使用基于铜的敏化剂作为关键步骤的光氧化还原催化,实现了由芘和[4]-或[5]螺环芳烃融合产生的手性芳烃的合成。为了合成目标化合物,在分批和连续流动策略中进行了光环化实验。研究了芘-螺环芳烃杂化物的固态结构、紫外/可见吸收光谱和荧光光谱,并与母体[5]螺环芳烃进行了比较,以辨别在螺环芳烃骨架中并入芘部分的影响。研究表明,与母体[5]螺环芳烃的固态结构相比,芘-螺环芳烃杂化物在固态中采用共面或堆叠排列。与母体[5]螺环芳烃相比,芘-螺环芳烃杂化物的紫外/可见和荧光光谱表现出强烈的红移。DFT 计算表明,在螺环芳烃的 y 轴上扩展π 表面的策略增加了它们的 HOMO 能级,同时降低了它们的 LUMO 能级,从而显著降低了带隙。