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纳米多孔氧化铝膜的表面电学性质:通过电动实验研究纳米通道曲率、粗糙度和组成的影响

Electrical surface properties of nanoporous alumina membranes: influence of nanochannels' curvature, roughness and composition studied electrokinetic experiments.

作者信息

Vakilinejad Ali, Dubois Emmanuelle, Michot Laurent, Jardat Marie, Lairez Didier, Durand-Vidal Serge, Guibert Clément, Jouault Nicolas

机构信息

Sorbonne Université, Laboratoire PHENIX, CNRS, UMR 8234, 4 place Jussieu, 75005 Paris, France.

Laboratoire des Solides Irradiés (LSI), École polytechnique, CNRS, CEA, Institut Polytechnique de Paris, 91128 Palaiseau Cedex, France.

出版信息

Phys Chem Chem Phys. 2023 Oct 25;25(41):28150-28161. doi: 10.1039/d3cp04067d.

DOI:10.1039/d3cp04067d
PMID:37818652
Abstract

Among classical nanoporous oxide membranes, anodic aluminum oxide (AAO) membranes, made of non-connected, parallel and ordered nanochannels, are very interesting nanoporous model systems widely used for multiple applications. Since most of these applications involve local phenomena at the nanochannel surface, the fine description of the electrical surface behavior in aqueous solution is thus of primordial interest. Here, we use an original experimental approach combining several electrokinetic techniques (tangential and transverse streaming potential as well as electrophoretic mobility experiments) to measure the -potential and determine the surface isoelectric points (IEPs) of several AAOs having different characteristic sizes and compositions. Using such an approach, all the different surfaces available in AAOs can be probed: outer surfaces (top and bottom planes), pore wall surfaces (, inner surfaces) and surfaces created by the grinding of the AAOs. We find clear IEP differences between the outer, pore wall and ground surfaces and discuss these in terms of nanochannel and surface morphology (curvature and roughness) and of modifications of the chemical environment of the surface hydroxyl groups. These results highlight the heterogeneities between the different surfaces of these AAO membranes and emphasize the necessity to combine complementary electrokinetic techniques to properly understand the material, an approach which can be extended to many nanoporous systems.

摘要

在经典的纳米多孔氧化物膜中,由不相连、平行且有序的纳米通道构成的阳极氧化铝(AAO)膜是非常有趣的纳米多孔模型系统,被广泛用于多种应用。由于这些应用大多涉及纳米通道表面的局部现象,因此对水溶液中电表面行为的精细描述至关重要。在此,我们采用一种原创的实验方法,结合多种电动技术(切向和横向流动电势以及电泳迁移率实验)来测量ζ电位并确定几种具有不同特征尺寸和组成的AAO的表面等电点(IEP)。使用这种方法,可以探测AAO中所有不同的表面:外表面(顶面和底面)、孔壁表面(即内表面)以及通过研磨AAO形成的表面。我们发现外表面、孔壁表面和研磨表面之间存在明显的IEP差异,并从纳米通道和表面形态(曲率和粗糙度)以及表面羟基化学环境的变化方面进行了讨论。这些结果突出了这些AAO膜不同表面之间的异质性,并强调了结合互补电动技术以正确理解该材料的必要性,这种方法可扩展到许多纳米多孔系统。

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