Yonezawa Shumpei, Kawai Tsuyoshi, Nakashima Takuya
Division of Materials Science, Graduate School of Science and Technology, Nara Institute of Science and Technology, Ikoma, Japan.
Front Chem. 2021 Mar 26;9:652703. doi: 10.3389/fchem.2021.652703. eCollection 2021.
Propagation and amplification of chirality are considered to play an important role in the chemical evolution of biological homochirality. Stereochemical communications have been demonstrated to have a significant effect on the formation of chiral hierarchical structures in helical polymers, surface assemblies and supramolecular polymers. The formation of supramolecular copolymers based on chiral and achiral bichromophoric perylenediimide (PDI) dyes having a binaphtyl- and biphenyl-core-bridging unit, respectively, was investigated in terms of chiral amplification and propagation. The biphenyl-bridged PDI dye was expected to perform as a prochiral component to adopt both right- and left-handed twisting structures with the free rotation over the phenyl-phenyl linkage upon partnered with the chiral binaphtly PDI dye in the coassemblies. The coassemblies between the chiral and achiral PDI dyes with dissimilar core units demonstrated the composition dependent control in the length of supramolecular nanofibers as well as amplification of optical activity.
手性的传播和放大被认为在生物同手性的化学演化中起着重要作用。立体化学通讯已被证明对螺旋聚合物、表面组装体和超分子聚合物中手性分级结构的形成有显著影响。分别基于具有联萘基和联苯基核心桥连单元的手性和非手性双色苝二酰亚胺(PDI)染料,研究了超分子共聚物的形成过程中的手性放大和传播。预计联苯桥连的PDI染料作为前手性组分,在共组装体中与手性联萘基PDI染料结合时,会通过苯基-苯基键的自由旋转形成右手和左手扭曲结构。具有不同核心单元的手性和非手性PDI染料之间的共组装体展示了超分子纳米纤维长度的组成依赖性控制以及光学活性的放大。