Kasuo Yui, Kitahata Hiroyuki, Koyano Yuki, Takinoue Masahiro, Asakura Kouichi, Banno Taisuke
Department of Applied Chemistry, Faculty of Science and Technology , Keio University , 3-14-1 Hiyoshi , Kohoku-ku, Yokohama 223-8522 , Japan.
Department of Physics, Graduate School of Science , Chiba University , 1-33 Yayoi-cho , Inage-ku, Chiba 263-8522 , Japan.
Langmuir. 2019 Oct 15;35(41):13351-13355. doi: 10.1021/acs.langmuir.9b01722. Epub 2019 Oct 7.
Self-propelled motion of micrometer-sized oil droplets in surfactant solution has drawn much attention as an example of nonlinear life-like dynamics under far-from-equilibrium conditions. The driving force of this motion is thought to be induced by Marangoni convection based on heterogeneity in the interfacial tension at the droplet surface. Here, to clarify the required conditions for the self-propelled motion of oil droplets, we have constructed a chemical system, where oil droplet motion is induced by the production of 1,2,3-triazole-containing surfactants through the Cu-catalyzed azide-alkyne cycloaddition reaction. From the results of the visualization and analysis of flow fields around the droplet, the motion of the droplets could be attributed to the formation of flow fields, which achieved sufficient strength caused by the in situ production of surfactants at the droplet surface.
微米级油滴在表面活性剂溶液中的自推进运动,作为远离平衡条件下非线性类生命动力学的一个例子,已引起了广泛关注。这种运动的驱动力被认为是由基于液滴表面界面张力不均匀性的马兰戈尼对流所诱导的。在此,为了阐明油滴自推进运动所需的条件,我们构建了一个化学体系,其中油滴运动是通过铜催化的叠氮化物-炔烃环加成反应生成含1,2,3-三唑的表面活性剂而诱导产生的。从液滴周围流场的可视化和分析结果来看,液滴的运动可归因于流场的形成,而流场强度足以由液滴表面表面活性剂的原位生成所致。