Balme Sebastien, Picaud Fabien, Lepoitevin Mathilde, Bechelany Mikhael, Balanzat Emmanuel, Janot Jean-Marc
Institut Européen des Membranes, IEM - UMR 5635, ENSCM, CNRS, Univ. Montpellier, Montpellier, France.
Faraday Discuss. 2018 Oct 1;210(0):69-85. doi: 10.1039/c8fd00008e.
We investigated ionic transport behavior in the case of uncharged conical nanopores. To do so, we designed conical nanopores using atomic layer deposition of Al2O3/ZnO nanolaminates and then coated these with trimethylsilane. The experimental results are supported by molecular dynamics simulations. The ionic transport reveals an unexpected behavior: (i) a current rectification and (ii) a constant conductance at low salt concentration which are usually reported for charged conical nanopore. To explain these results, we have considered different assumptions: (i) a default of functionalization, (ii) the adsorption anion and (iii) the slippage. The first one was refuted by the study of the poly-l-lysine transport through the nanopore. To verify the second assumption, we investigate the effect of pH on the current rectification and the molecular dynamics simulations. Finally our study demonstrates that the unexpected ionic transport is provided to a predominant effect of slippage due to the water organization at the solid/liquid interface.
我们研究了不带电锥形纳米孔情况下的离子传输行为。为此,我们利用氧化铝/氧化锌纳米层的原子层沉积设计了锥形纳米孔,然后用三甲基硅烷对其进行涂层处理。实验结果得到了分子动力学模拟的支持。离子传输呈现出意想不到的行为:(i)电流整流;(ii)在低盐浓度下具有恒定电导,而这些通常是带电锥形纳米孔所具有的特性。为了解释这些结果,我们考虑了不同的假设:(i)功能化缺失;(ii)阴离子吸附;(iii)滑移。通过研究聚-L-赖氨酸通过纳米孔的传输,第一个假设被推翻。为了验证第二个假设,我们研究了pH对电流整流的影响以及分子动力学模拟。最后,我们的研究表明,由于固/液界面处的水结构,意想不到的离子传输主要是由滑移效应导致的。