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The Fluid Diode: Tunable Unidirectional Flow through Porous Substrates

机译:流体二极管:可调节的单向流经多孔基质的流动

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Many important applications in fluid management could benefit from unidirectional transport through porous media via a simple, large-area, low-cost coating treatment; in essence, a fluid diode demonstrated herein for water using common cellulosic paper substrates. In electronics, the diode is an electrical component with asymmetric current transfer characteristics. A light (<2 g/m~2) superhydrophobic conformal coating applied onto one side of a porous substrate is shown to create a liquid transport function analogous to the electronic diode, facilitating fluid movement in one direction under negligible penetration pressures, but opposing it in reverse up to greater pressures. The phenomenon is driven by capillary action and can be observed using any similarly-thin fluid barrier applied on only one side (i.e., wettability contrast) of an absorbent porous matrix. Diodic action and liquid transport rates are shown to be highly tunable, determined by fiber diameter and spacing, in combination with coating deposition amount. As an example, the device is used to separate an oil/water mixture, relying upon the surface tension differences of the mixture constituents, and may be implemented in multicomponent fluid filtration/ separation technologies.
机译:通过简单,大面积,低成本的涂层处理,流体管理中的许多重要应用都可以受益于通过多孔介质的单向运输;本质上,本文证明了使用普通纤维素纸基材用于水的流体二极管。在电子产品中,二极管是具有不对称电流传输特性的电气组件。显示了在多孔基材的一侧上施加的轻质(<2 g / m〜2)超疏水保形涂料,可产生类似于电子二极管的液体传输功能,在可忽略的穿透压力下促进流体沿一个方向运动,但与之相反相反,压力更大。该现象是由毛细作用驱动的,并且可以使用仅施加在吸收性多孔基质的一侧上的任何类似薄的流体屏障来观察到(即,润湿性对比)。显示出二极体作用和液体传输速率是高度可调的,取决于纤维的直径和间距以及涂层的沉积量。作为示例,该装置用于根据混合物成分的表面张力差异来分离油/水混合物,并且可以在多组分流体过滤/分离技术中实施。

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