Jin Zhehui, Sasaki Norihiko, Kishida Natsuki, Takeuchi Masayuki, Wakayama Yutaka, Sugiyasu Kazunori
Department of Chemistry and Biochemistry Graduate School of Engineering, Kyushu University, Nishi-ku, Fukuoka, 819-0395, Japan.
National Institute for Materials Science, Tsukuba, Ibaraki, 305-0047, Japan.
Chemistry. 2023 Nov 21;29(65):e202302181. doi: 10.1002/chem.202302181. Epub 2023 Oct 11.
Supramolecular polymers are formed through nucleation (i. e., initiation) and polymerization processes, and kinetic control over the nucleation process has recently led to the realization of living supramolecular polymerization. Changing the viewpoint, herein we focus on controlling the polymerization process, which we expect to pave the way to further developments in controlled supramolecular polymerization. In our previous study, two-dimensional living supramolecular polymerization was used to produce supramolecular nanosheets with a controlled area; however, these had rough edges. In this study, the growth of the nanosheets was controlled by using a 'dummy' monomer to produce supramolecular nanosheets with smoothed edges.
超分子聚合物通过成核(即引发)和聚合过程形成,并且对成核过程的动力学控制最近已实现了活性超分子聚合。换个角度来看,在此我们专注于控制聚合过程,我们期望这将为可控超分子聚合的进一步发展铺平道路。在我们之前的研究中,二维活性超分子聚合被用于制备具有可控面积的超分子纳米片;然而,这些纳米片边缘粗糙。在本研究中,通过使用“虚拟”单体来控制纳米片的生长,以制备边缘光滑的超分子纳米片。