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合成单纳米孔和纳米管膜。

Synthetic single-nanopore and nanotube membranes.

作者信息

Harrell C Chad, Lee Sang Bok, Martin Charles R

机构信息

Department of Chemistry and Center for Research at the Bio/Nano Interface, University of Florida, Gainesville, Florida 32611-7200, USA.

出版信息

Anal Chem. 2003 Dec 15;75(24):6861-7. doi: 10.1021/ac034602n.

Abstract

There is increasing interest in investigating transport and electrochemical phenomena in synthetic membrane samples that contain a single pore of nanoscopic diameter. Approaches used to date for preparing such single-nanopore membranes include microfabrication-based methods, the track-etch method, and a method based on the incorporation of a single fullerene nanotube within a synthetic membrane. We describe here an alternative approach that we believe is easier and more accessible than the previously described methods. This method is based on a very low pore density track-etch membrane obtained from commercial sources. Fluorescence microscopy is used to identify and isolate a single nanopore in this membrane. Membrane samples containing single nanopores with diameters as small as 30 nm have been prepared. Furthermore, we show here that an electroless plating method can be used to deposit a gold nanotube within the single nanopore, and this provides a route for further decreasing the inside diameter of the pore. A single-nanotube membrane with an electrochemically determined inside diameter of approximately 2 nm was prepared and evaluated.

摘要

对含有单个纳米级直径孔的合成膜样品中的传输和电化学现象进行研究的兴趣日益浓厚。迄今为止,用于制备此类单纳米孔膜的方法包括基于微加工的方法、径迹蚀刻法以及基于在合成膜中掺入单个富勒烯纳米管的方法。我们在此描述一种替代方法,我们认为该方法比先前描述的方法更简便且更易于操作。此方法基于从商业渠道获得的极低孔密度径迹蚀刻膜。利用荧光显微镜来识别和分离该膜中的单个纳米孔。已制备出包含直径小至30 nm的单个纳米孔的膜样品。此外,我们在此表明,可以使用化学镀法在单个纳米孔内沉积金纳米管,这为进一步减小孔的内径提供了一条途径。制备并评估了一种电化学测定内径约为2 nm的单纳米管膜。

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