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用光移动 3D 中的液滴。

Moving Droplets in 3D Using Light.

机构信息

ARC Centre of Excellence for Electromaterials Science and Intelligent Polymer Research Institute, AIIM Faculty, Innovation Campus, University of Wollongong, North Wollongong, NSW, 2522, Australia.

Department of Chemistry, University of Otago, Dunedin, 9054, New Zealand.

出版信息

Adv Mater. 2018 Aug;30(35):e1801821. doi: 10.1002/adma.201801821. Epub 2018 Jul 8.

Abstract

The emulation of the complex cellular and bacterial vesicles used to transport materials through fluids has the potential to add revolutionary capabilities to fluidic platforms. Although a number of artificial motile vesicles or microdroplets have been demonstrated previously, control over their movement in liquid in 3D has not been achieved. Here it is shown that by adding a chemical "fuel," a photoactive material, to the droplet, it can be moved in any direction (3D) in water using simple light sources without the need for additives in the water. The droplets can be made up of a range of solvents and move with speeds as high as 10.4 mm s toward or away from the irradiation source as a result of a light-induced isothermal change in interfacial tension (Marangoni flow). It is further demonstrated that more complex functions can be accomplished by merging a photoactive droplet with a droplet carrying a "cargo" and moving the new larger droplet to a "reactor" droplet where the cargo undergoes a chemical reaction. The control and versatility of this light-activated, motile droplet system will open up new possibilities for fluidic chemical transport and applications.

摘要

通过模拟用于在流体中运输物质的复杂细胞和细菌囊泡,有可能为流体制动平台增添革命性的功能。尽管以前已经展示了许多人工运动囊泡或微滴,但尚未实现对它们在 3D 液体中的运动的控制。在这里,通过向微滴中添加化学“燃料”(一种光活性材料),可以使用简单的光源在水中向任何方向(3D)移动微滴,而无需在水中添加添加剂。微滴可以由多种溶剂组成,并由于界面张力的光诱导等温变化(Marangoni 流)而以高达 10.4mm/s 的速度朝向或远离辐照源移动。进一步证明,通过将光活性微滴与携带“货物”的微滴合并,并将新的较大微滴移动到“反应器”微滴中,使货物发生化学反应,可以完成更复杂的功能。这种光激活、运动微滴系统的控制和多功能性将为流体制动中的化学运输和应用开辟新的可能性。

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