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In Situ Control of Underwater-Pinning of Organic Droplets on a Surfactant-Doped Conjugated Polymer Surface

机译:掺杂表面活性剂的共轭聚合物表面上有机液滴的水下原位控制

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Controlling the pinning of organic droplets on solid surfaces is of fundamental and practical interest in the field of material science and engineering, which has numerous applications such as surface cleaning, water treatment, and microfluidics. Here, a rapid in situ control of pinning and actuation of organic droplets is demonstrated on dodecylbenzenesulfonate-doped polypyrrole (PPy(DBS)) surfaces in an aqueous environment via an electrochemical redox process. A dramatic change of the pinning results from the transport of DBS- molecules between the PPy(DBS) surface and the aqueous environment, as well as from a simultaneous alternation of the surface oleophobicity to organic liquids during the redox process. This in situ control of the droplet pinning enables a stop-and-go droplet actuation, applicable to both polar and apolar organic droplets, at low voltages (similar to 0.9 V) with an extremely low roll-off angle (similar to 0.4 degrees).
机译:控制有机滴在固体表面上的钉扎是材料科学和工程领域的基本和实际利益,材料科学和工程领域具有许多应用程序,例如表面清洁,水处理和微流体技术。在这里,通过电化学氧化还原工艺在水性环境中的十二烷基苯磺酸盐掺杂的聚吡咯(PPy(DBS))表面上,可以快速原位控制有机液滴的固定和致动。钉扎作用的显着变化是由于DBy分子在PPy(DBS)表面与水性环境之间的迁移以及氧化还原过程中表面疏油性同时转变为有机液体所致。液滴钉扎的这种原位控制实现了即停即走的液滴致动,适用于极性和非极性有机液滴,在低电压(类似于0.9 V)下具有极低的滚降角(类似于0.4度) 。

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