School of Chemistry, University of Birmingham, Edgbaston, Birmingham B15 2TT, United Kingdom.
Department of Chemistry, University College London, 20 Gordon Street, London WC1H 0AJ, United Kingdom.
J Am Chem Soc. 2022 Jul 13;144(27):12290-12298. doi: 10.1021/jacs.2c03531. Epub 2022 Jun 28.
This work showcases chiral complementarity in aromatic stacking interactions as an effective tool to optimize the chiroptical and electrochemical properties of perylene diimides (PDIs). PDIs are a notable class of robust dye molecules and their rich photo- and electrochemistry and potential chirality make them ideal organic building blocks for chiral optoelectronic materials. By exploiting the new bay connectivity of twisted PDIs, a dynamic bis-PDI macrocycle (the "Pink Box") is realized in which homochiral PDI-PDI π-π stacking interactions are switched on exclusively. Using a range of experimental and computational techniques, we uncover three important implications of the macrocycle's chiral complementarity for PDI optoelectronics. First, the homochiral intramolecular π-π interactions anchor the twisted PDI units, yielding enantiomers with half-lives extended over 400-fold, from minutes to days (in solution) or years (in the solid state). Second, homochiral H-type aggregation affords the macrocycle red-shifted circularly polarized luminescence and one of the highest dissymmetry factors of any small organic molecule in solution ( = 10 at 675 nm). Finally, excellent through-space PDI-PDI π-orbital overlap stabilizes PDI reduced states, akin to covalent functionalization with electron-withdrawing groups.
这项工作展示了芳构 stacking 相互作用中的手性互补性,这是优化并苯二酰亚胺(PDI)的手性光学和电化学性质的有效工具。PDI 是一类显著的坚固染料分子,其丰富的光化学和电化学性质以及潜在的手性使它们成为手性光电材料的理想有机构建块。通过利用扭曲 PDI 的新海湾连接性,实现了动态双 PDI 大环(“粉红盒”),其中同种手性 PDI-PDI π-π 堆积相互作用被专门打开。使用一系列实验和计算技术,我们揭示了大环手性互补性对 PDI 光电的三个重要影响。首先,同种手性的分子内 π-π 相互作用固定了扭曲的 PDI 单元,使对映体的半衰期从几分钟延长到几天(在溶液中)或几年(在固态中),延长了 400 多倍。其次,同种手性的 H 型聚集赋予大环红移圆偏振发光,以及溶液中小有机分子中最高的不对称因子之一(在 675nm 处为 10)。最后,PDI-PDI π-轨道的良好的空间重叠稳定了 PDI 的还原态,类似于用吸电子基团进行共价功能化。