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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >pH-Induced Motion Control of Self-Propelled Oil Droplets Using a Hydrolyzable Gemini Cationic Surfactant
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pH-Induced Motion Control of Self-Propelled Oil Droplets Using a Hydrolyzable Gemini Cationic Surfactant

机译:使用可水解双子座阳离子表面活性剂的pH值引起的自动油滴运动控制

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摘要

Self-propelled motion of micrometer-sized substances has drawn much attention as an autonomous transportation system. One candidate vehicle is a chemically driven micrometer-sized oil droplet. However, to the best of our knowledge, there has been no report of a chemical reaction system controlling the three-dimensional motion of oil droplets underwater. In this study, we developed a molecular system that controlled the self-propelled motion of 4-heptyloxybenzaldehyde oil droplets by using novel gemini cationic surfactants containing carbonate linkages (2G12C). We found that, in emulsions containing sodium hydroxide, the motion time of the self-propelled oil droplets was longer in the presence of 2G12C than in the presence of gemini cationic surfactants without carbonate linkages. Moreover, in 2G12C solution, oil droplets at rest underwent unidirectional, self-propelled motion in a gradient field toward a higher concentration of sodium hydroxide. Even though they stopped within several seconds, they restarted in the same direction. 2G12C was gradually hydrolyzed under basic conditions to produce a pair of the corresponding monomeric surfactants, which exhibit different interfacial properties from 2G12C. The prolonged and restart motion of the oil droplets were explained by the increase in the heterogeneity of the interfacial tension of the oil droplets.
机译:作为自动运输系统,微米级物质的自驱动运动引起了广泛关注。一种候选载体是化学驱动的微米级油滴。然而,据我们所知,还没有化学反应系统控制水下油滴的三维运动的报道。在这项研究中,我们开发了一种分子系统,该系统通过使用含有碳酸酯键(2G12C)的新型双子阳离子表面活性剂来控制4-庚氧基苯甲醛油滴的自推进运动。我们发现,在含有氢氧化钠的乳液中,在存在2G12C的情况下,自推进油滴的运动时间比在没有碳酸酯键的双子阳离子表面活性剂的情况下更长。此外,在2G12C溶液中,静止的油滴在梯度场中朝着更高浓度的氢氧化钠进行单向自驱动运动。即使它们在几秒钟之内停止,它们仍朝相同的方向重新启动。 2G12C在碱性条件下逐渐水解,以生产一对相应的单体表面活性剂,这些表面活性剂与2G12C具有不同的界面性质。油滴的延长运动和重新开始运动是由油滴界面张力的不均匀性增加所解释的。

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