Liu Yiping, Hao Aiyou, Xing Pengyao
School of Chemistry and Chemical Engineering, Shandong University, Jinan, 250100, P. R. China.
Chemistry. 2022 Oct 12;28(57):e202201956. doi: 10.1002/chem.202201956. Epub 2022 Aug 18.
Chirality transfer from chiral molecules to assemblies is of vital importance to the design of functional chiral materials. In this work, selective co-assembly behaviors between chiral molecules and an achiral luminophore, potentially driven by the intermolecular salt-bridge type hydrogen bonds are reported. Cyano-substituted tetrakis(arylthio)benzene carboxylic acid (TA) served as the luminophore and hydrogen bond donors, which underwent co-assembly with different chiral amines. It was found that structures of chiral amines affect the chirality transfer and the properties of co-assemblies due to effects on hydrogen bonds and stacking pattern. Only in specific co-assemblies, the chiroptical properties occurred at both ground state and excited states based on the emerged Cotton effects and circularly polarized luminescence (CPL) signals, revealing that the chirality was successfully transferred from molecular level to supramolecular level. In addition, accurate quantitative examination of chiral amines was realized by circular dichroism (CD) spectra. This work demonstrates the characteristic chirality response and transfer through co-assembly, providing a potential method to develop smart chiroptical materials.
手性从手性分子向聚集体的传递对于功能性手性材料的设计至关重要。在这项工作中,报道了手性分子与非手性发光体之间的选择性共组装行为,这种行为可能是由分子间盐桥型氢键驱动的。氰基取代的四(芳硫基)苯羧酸(TA)作为发光体和氢键供体,与不同的手性胺进行共组装。研究发现,手性胺的结构由于对氢键和堆积模式的影响,从而影响手性传递和共组装体的性质。仅在特定的共组装体中,基于出现的科顿效应和圆偏振发光(CPL)信号,在基态和激发态均出现了手性光学性质,这表明手性成功地从分子水平传递到了超分子水平。此外,通过圆二色性(CD)光谱实现了对手性胺的准确定量检测。这项工作展示了通过共组装实现的特征性手性响应和传递,为开发智能手性光学材料提供了一种潜在方法。