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Fabrication of Single Cylindrical Au-Coated Nanopores with Non-Homogeneous Fixed Charge Distribution Exhibiting High Current Rectifications

机译:具有非均相固定电荷分布且表现出高电流整流性能的单圆柱形金包覆纳米孔的制备

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摘要

We designed and characterized a cylindrical nanopore that exhibits high electrochemical current rectification ratios at low and intermediate electrolyte concentrations. For this purpose, the track-etched single cylindrical nanopore in polymer membrane was coated with a gold (Au) layer via electroless plating technique. Then, a non-homogeneous fixed charge distribution inside the Au-coated nanopore was obtained by incorporating thiol-terminated uncharged poly-(N-isopropylacrylamide) chains in series to poly(4-vinyl-pyridine) chains, which were positively charged at acidic pH values. The functionalization reaction was checked by measuring the current—voltage curves prior to and after the chemisorption of polymer chains. The experimental nanopore characterization included the effects of temperature, adsorption of chloride ions, electrolyte concentration, andpH of the external solutions. The results obtained are further explained in terms of a theoretical continuous model. The combination of well-established chemical procedures (thiol and self-assembled monolayer formation chemistry, electroless plating, ion track etching) and physical models (two-region pore and Nernst—Planck equations) permits the obtainment of a new nanopore with high current rectification ratios. The single pore could be scaled up to multipore membranes of potential interest for pH sensing and chemical actuators.
机译:我们设计并表征了圆柱形纳米孔,该纳米孔在低和中等电解质浓度下显示出高的电化学电流整流比。为此,通过化学镀技术在聚合物膜中的径迹蚀刻单个圆柱形纳米孔上涂上一层金(Au)。然后,通过将巯基封端的不带电聚-(N-异丙基丙烯酰胺)链串联到聚(4-乙烯基-吡啶)链上获得非均质的固定电荷分布,所述巯基封端的不带电聚-(N-异丙基丙烯酰胺)链在酸性下带正电pH值。通过测量聚合物链化学吸附之前和之后的电流-电压曲线来检查官能化反应。实验的纳米孔表征包括温度,氯离子吸附,电解质浓度和外部溶液pH的影响。根据理论连续模型进一步解释了获得的结果。完善的化学程序(硫醇和自组装单层形成化学,化学镀,离子迹线蚀刻)和物理模型(两区域孔和Nernst-Planck方程)的结合,可以得到具有高电流整流的新纳米孔比率。单个孔可以扩大到对pH传感和化学致动器可能感兴趣的多孔膜。

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