论文标题

在狭窄的空间中,由液体液相分离产生和维持的自propopelopleplepleplets

Self-propelling Microdroplets Generated and Sustained by Liquid-liquid Phase Separation in Confined Spaces

论文作者

Zhang, Xuehua, You, Jae Bem, Arends, Gilmar F., Qian, Jiasheng, Chen, Yibo, Lohse, Detlef, Shaw, John M.

论文摘要

狭窄空间中的流动运输在技术过程中无处不在,范围从微孔膜对药物成分的分离和纯化以及生物医学治疗中的药物输送到催化剂包装的反应堆中的化学和生物量转化,以及二氧化碳二氧化碳序列的化学和生物量转化。在这项工作中,我们建议通过自行销售微弹片在狭窄空间中增强液体传输的不同途径。这些微孔可以从局部液体液相分离自发形成,因为三元混合物被散布的溶剂稀释。高速图像揭示了微螺旋体的生长,分解和沿实心表面迅速推动,最大速度高达〜160 um/s,这是由于相位分离导致的急剧浓度梯度的响应。微螺旋体的自我刺激诱导了限制空间朝向相位位置的壁之间的补充流,这反过来又将混合物从平衡中驱逐出来,并导致重复的事件级联。我们对自我销售液滴的复杂现象的发现提出了一种有效的方法,可以增强限制空间内多组分液体混合物的流动运动,以有效分离和智能运输过程。

Flow transport in confined spaces is ubiquitous in technological processes, ranging from separation and purification of pharmaceutical ingredients by microporous membranes and drug delivery in biomedical treatment to chemical and biomass conversion in catalyst-packed reactors and carbon dioxide sequestration. In this work, we suggest a distinct pathway for enhanced liquid transport in a confined space via self-propelling microdroplets. These microdroplets can form spontaneously from localized liquid-liquid phase separation as a ternary mixture is diluted by a diffusing poor solvent. High speed images reveal how the microdroplets grow, break up and propel rapidly along the solid surface, with a maximal velocity up to ~160 um/s, in response to a sharp concentration gradient resulting from phase separation. The microdroplet self-propulsion induces a replenishing flow between the walls of the confined space towards the location of phase separation, which in turn drives the mixture out of equilibrium and leads to a repeating cascade of events. Our findings on the complex and rich phenomena of self-propelling droplets suggest an effective approach to enhanced flow motion of multicomponent liquid mixtures within confined spaces for time effective separation and smart transport processes.

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