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Controlling potassium selectivity and proton blocking in a hybrid biological/solid-state polymer nanoporous membrane

机译:控制钾离子选择性和质子阻塞在混合生物/固态聚合物纳米多孔膜

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摘要

Specific separations of protons and cations are usually performed by electromembrane processes, which require external electric energy. An easier process would be using a membrane able to separate both entities by passive diffusion. Presently, such synthetic nanoporous membranes do not exist. Here, we report the production of a robust hybrid biological/artificial solid-state membrane, which allows selective permeation of alkali metal cations without competing or concurrent permeation of protons. This membrane is simple to prepare and is based on the hydrophobic nature of the polymeric pore walls, and the confined gramicidin A molecules within. This work opens a new route for separation in the domain of nanobiofiltration, especially for tunable nanodevices based on differential ion conduction, with a fundamental understanding of the confinement mechanism.
机译:特定的质子和阳离子分离通常由electromembrane流程,这需要外部电能。过程将使用膜能够单独的两个实体通过被动扩散。目前,这种人工合成的纳米多孔膜不存在的。健壮的混合生物/人工固态膜,它允许选择性地渗透没有竞争或碱金属阳离子并发渗透的质子。简单的准备和基于吗疏水性聚合物的孔壁,和限制内短杆菌肽分子。这项工作的分离开辟了新的途径nanobiofiltration领域,特别是可调nanodevices基于微分离子传导,有基本的认识约束机制。

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