Jia Shengzhe, Tao Tiantian, Xie Yujiang, Yu Liuyang, Kang Xiang, Zhang Yuan, Tang Weiwei, Gong Junbo
State Key Laboratory of Chemical Engineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300072, China.
Collaborative Innovation Center of Chemistry Science and Engineering, Tianjin, 300072, China.
Small. 2024 Mar;20(11):e2307874. doi: 10.1002/smll.202307874. Epub 2023 Oct 27.
Chirality, as one of the most striking characteristics, exists at various scales in nature. Originating from the interactions of host and guest molecules, supramolecular chirality possesses huge potential in the design of functional materials. Here, an overview of the recent progress in structure designs and functions of chiral supramolecular materials is present. First, three design routes of the chiral supramolecular structure are summarized. Compared with the template-induced and chemical synthesis strategies that depend on accurate molecular identification, the twisted-assembly technique creates chiral materials through the ordered stacking of the nanowire or films. Next, chirality inversion and amplification are reviewed to explain the chirality transfer from the molecular level to the macroscopic scale, where the available external stimuli on the chirality inversion are also given. Lastly, owing to the optical activity and the characteristics of the layer-by-layer stacking structure, the supramolecular chirality materials display various excellent performances, including smart response, shape-memorization, superior mechanical performance, and applications in biomedical fields. To sum up, this work provides a systematic review of the helical assemblies, structure design, and applications of supramolecular chirality systems.
手性作为自然界中最显著的特征之一,存在于各个尺度。超分子手性源于主体和客体分子的相互作用,在功能材料设计方面具有巨大潜力。在此,对近年来手性超分子材料的结构设计和功能进展进行综述。首先,总结了手性超分子结构的三种设计途径。与依赖精确分子识别的模板诱导和化学合成策略相比,扭曲组装技术通过纳米线或薄膜的有序堆叠来制备手性材料。其次,对手性反转和放大进行了综述,以解释从分子水平到手性宏观尺度的手性转移,同时还给出了可用于手性反转的外部刺激。最后,由于光学活性和层层堆叠结构的特性,超分子手性材料展现出各种优异性能,包括智能响应、形状记忆、卓越的机械性能以及在生物医学领域的应用。总之,这项工作对手性超分子体系的螺旋组装、结构设计及应用进行了系统综述。