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Charge-selective transport of organic and protein analytes through synthetic nanochannels

机译:通过合成纳米通道对有机和蛋白质分析物进行电荷选择性转运

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摘要

We present an experimental demonstration of a synthetic nanoporous membrane suitable for charge-selective transport of ionic species. The surfaces and walls of synthetic nanochannels, fabricated in heavy ion-tracked polyethylene terephthalate membranes are negatively charged due to the presence of carboxylate moieties. These nanofilters discriminate and gate the transport of cations while inhibiting the passage of anions. The permselectivity of these membranes is reversed by converting the carboxylic moieties into terminated amino groups. The positively charged (aminated) membranes facilitate the transport of anions. Based on the same principle, charged biomolecules (bovine serum albumin and lysozyme) are successfully filtered through these membranes. These membranes also exhibit the phenomenon of ion concentration polarization.
机译:我们提出了适合于离子物种的电荷选择性运输的合成纳米多孔膜的实验演示。由于存在羧酸根部分,在重离子跟踪的聚对苯二甲酸乙二醇酯膜中制造的合成纳米通道的表面和壁带负电。这些纳米过滤器区分并控制阳离子的传输,同时抑制阴离子的通过。这些膜的渗透选择性通过将羧基部分转化为封端的氨基而逆转。带正电(胺化)的膜有助于阴离子的运输。基于相同的原理,带电的生物分子(牛血清白蛋白和溶菌酶)已成功通过这些膜过滤。这些膜还表现出离子浓度极化现象。

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