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Design of Reactive Surfactants that Control the Locomotion Mode of Cell-Sized Oil Droplets

机译:控制细胞大小油滴运动模式的反应性表面活性剂的设计

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The self-propelled motion of micrometer-sized oil droplets in non-equilibrium systems has attracted considerable attention as a primitive type of inanimate chemical machinery. We investigated the dynamics of n-heptyloxybenzaldehyde droplets in a cationic reactive surfactant solution with the objective of controlling the movement of self-propelled oil droplets. (1) We designed a novel molecular system that lengthened the locomotion time of oil droplets by using ester-containing cationic surfactants, (2) we evaluated the dynamics of oil droplets in a solution of a gemini cationic surfactant with various alkyl chain lengths in the linker to induce a locomotion mode change of the droplets and induce a conformational change in the flexible linked molecule, and (3) we examined the behavior of oil droplets in a microchannel in a solution containing a gemini cationic surfactant that has a carbonate linkage. These droplets exhibited two motions during the hydrolysis of the carbonate linkage, generating two surfactant species.
机译:作为无生命化学机械的原始类型,微米尺寸油滴在非平衡系统中的自推进运动引起了相当大的关注。我们研究了阳离子反应性表面活性剂溶液中正庚氧基苯甲醛液滴的动力学,目的是控制自推进油滴的运动。 (1)我们设计了一种新型分子系统,通过使用含酯的阳离子表面活性剂来延长油滴的运动时间,(2)我们评估了在具有不同烷基链长的双子阳离子表面活性剂溶液中油滴的动力学。接头以诱导液滴的运动模式变化并诱导柔性连接分子中的构象变化,并且(3)我们在含有双键阳离子表面活性剂(具有碳酸酯键)的溶液中检查了微通道中油滴的行为。这些小滴在碳酸酯键的水解过程中表现出两种运动,产生两种表面活性剂。

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