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Switchable imbibition in nanoporous gold

机译:纳米多孔金的可切换吸收

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摘要

Spontaneous imbibition enables the elegant propelling of nano-flows because of the dominance of capillarity at small length scales. The imbibition kinetics are, however, solely determined by the static host geometry, the capillarity, and the fluidity of the imbibed liquid. This makes active control particularly challenging. Here we show for aqueous electrolyte imbibition in nanoporous gold that the fluid flow can be reversibly switched on and off through electric potential control of the solid–liquid interfacial tension, that is, we can accelerate the imbibition front, stop it, and have it proceed at will. Simultaneous measurements of the mass flux and the electrical current allow us to document simple scaling laws for the imbibition kinetics, and to explore the charge transport in the metallic nanopores. Our findings demonstrate that the high electric conductivity along with the pathways for fluid/ionic transport render nanoporous gold a versatile, accurately controllable electrocapillary pump and flow sensor for minute amounts of liquids with exceptionally low operating voltages.
机译:由于毛细作用在小长度尺度上占优势,因此自吸能实现纳米流的优雅推进。然而,吸收动力学仅由静态主体的几何形状,毛细作用和吸收液体的流动性决定。这使得主动控制特别具有挑战性。在这里,我们证明了对于纳米多孔金中的水性电解质吸收,可以通过对固液界面张力的电势控制来可逆地打开和关闭流体流动,即,我们可以加速吸收前沿,阻止其并使其继续进行。随意。同时测量质量通量和电流,使我们能够记录吸收动力学的简单换算定律,并探索金属纳米孔中的电荷传输。我们的发现表明,高电导率以及流体/离子传输途径使纳米多孔金成为通用的,可精确控制的电毛细管泵和流量传感器,用于极少量的工作电压极低的液体。

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