Kaburagi Mari, Kojima Tomoya, Asakura Kouichi, Banno Taisuke
Department of Applied Chemistry, Faculty of Science and Technology, Keio University.
J Oleo Sci. 2022 Sep 1;71(9):1319-1326. doi: 10.5650/jos.ess22129. Epub 2022 Aug 15.
Self-propelled droplets are of considerable interest as an appropriate model for understanding the self-propulsion of objects in the fields of nonequilibrium physics and nonlinear science. Several research groups have reported the monodirectional motion of droplets, that is, chemotaxis, using stimuli-responsive materials. However, the precise control of chemotaxis remains challenging from the perspective of synthetic chemistry because chemotactic motion is primarily induced by the consumption of reactive oil or surfactants. Herein, we report a chemical system containing pH-responsive fumaric acid derivatives, in which the oil droplet exhibited positive chemotaxis over a wide pH range-from basic to acidic conditions. From the measurements of the interfacial tension between the oil and aqueous phases, it was deduced that the positive chemotaxis was due to heterogeneity in the interfacial tension of the droplet surface, which was accompanied by the production of surface-active compounds in the pH gradient in a linear-type channel.
自驱动液滴作为理解非平衡物理和非线性科学领域中物体自推进的合适模型,备受关注。几个研究小组报道了使用刺激响应材料实现液滴的单向运动,即趋化性。然而,从合成化学的角度来看,精确控制趋化性仍然具有挑战性,因为趋化运动主要是由活性油或表面活性剂的消耗引起的。在此,我们报道了一种包含pH响应性富马酸衍生物的化学体系,其中油滴在从碱性到酸性的宽pH范围内表现出正向趋化性。通过测量油相和水相之间的界面张力,推断出正向趋化性是由于液滴表面界面张力的不均匀性,这伴随着线性通道中pH梯度下表面活性化合物的产生。