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Super liquid-repellent gas membranes for carbon dioxide capture and heart–lung machines

机译:超级疏水性气体膜用于二氧化碳捕获和心肺机

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摘要

In a gas membrane, gas is transferred between a liquid and a gas through a microporous membrane. The main challenge is to achieve a high gas transfer while preventing wetting and clogging. With respect to the oxygenation of blood, haemocompatibility is also required. Here we coat macroporous meshes with a superamphiphobic—or liquid repellent—layer to meet this challenge. The superamphiphobic layer consists of a fractal-like network of fluorinated silicon oxide nanospheres; gas trapped between the nanospheres keeps the liquid from contacting the wall of the membrane. We demonstrate the capabilities of the membrane by capturing carbon dioxide gas into a basic aqueous solution and in addition use it to oxygenate blood. Usually, blood tends to clog membranes because of the abundance of blood cells, platelets, proteins and lipids. We show that human blood stored in a superamphiphobic well for 24 h can be poured off without leaving cells or adsorbed protein behind.
机译:在气膜中,气体通过微孔膜在液体和气体之间转移。主要的挑战是在防止润湿和堵塞的同时实现高的气体传输。关于血液的氧合作用,还需要血液相容性。在这里,我们在大孔网布上涂覆了超疏水(或拒液)层,以应对这一挑战。超疏水层由氟化硅纳米球的分形网络组成。截留在纳米球之间的气体使液体不与膜壁接触。我们通过将二氧化碳气体捕获到碱性水溶液中并另外使用它来充氧血液来证明膜的功能。通常,由于大量的血细胞,血小板,蛋白质和脂质,血液容易阻塞膜。我们表明,可以将倒在超两性孔中24小时的人类血液倒掉,而不会留下细胞或吸附的蛋白质。

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