Ueki Takeshi, Yoshida Ryo
Department of Materials Engineering, School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.
Phys Chem Chem Phys. 2014 Jun 14;16(22):10388-97. doi: 10.1039/c4cp00980k.
Herein, we summarise the recent developments in self-oscillating polymeric materials based on the concepts of supramolecular chemistry, where aggregates of molecular building blocks with non-covalent bonds evolve the temporal or spatiotemporal structure. By utilising the rhythmic oscillation of the association/dissociation of molecular aggregates coupled with the redox oscillation by the BZ reaction, novel soft materials that express similar functions as those of living matter will be achieved. Further, from the viewpoint of materials science, our recent approach to prepare self-oscillating materials that operate long-term under mild conditions will be introduced.
在此,我们基于超分子化学的概念总结了自振荡聚合物材料的最新进展,其中具有非共价键的分子构建块聚集体会演变成时间或时空结构。通过利用分子聚集体缔合/解离的节律振荡以及BZ反应的氧化还原振荡,将实现具有与生物类似功能的新型软材料。此外,从材料科学的角度出发,我们将介绍近期制备在温和条件下长期运行的自振荡材料的方法。