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pH 可调的碳纳米管孔隙中的离子选择性。

pH-tunable ion selectivity in carbon nanotube pores.

机构信息

Physical and Life Sciences Directorate, Lawrence Livermore National Laboratory, Livermore, California 94550, USA.

出版信息

Langmuir. 2010 Sep 21;26(18):14848-53. doi: 10.1021/la101943h.

Abstract

The selectivity of ion transport in nanochannels is of primary importance for a number of physical, chemical, and biological processes ranging from fluid separation to ion-channel-regulated cellular processes. Fundamental understanding of these phenomena requires model nanochannels with well-defined and controllable structural properties. Carbon nanotubes provide an ideal choice for nanofluidic studies because of their simple chemistry and structure, the atomic scale smoothness and chemical inertness of the graphitic walls, and the tunability of their diameter and length. Here, we investigate the selectivity of single and, for the first time, binary salt mixtures transport through narrow carbon nanotubes that act as the only pores in a silicon nitride membrane. We demonstrate that negatively charged carboxylic groups are responsible for the ion rejection performance of carbon nanotube pores and that ion permeation of small salts can be tuned by varying solution pH. Investigation of the effect of solution composition and ion valences for binary electrolytes with common cation in a pressure-driven flow reveals that the addition of slower diffusing multivalent anions to a solution of faster diffusing monovalent anions favors permeation of the monovalent anion. Larger fractions and valences of the added multivalent anions lower the rejection of the monovalent anion. In some cases, we observe negative rejection at low monovalent ion content.

摘要

离子在纳米通道中的选择性对于许多物理、化学和生物过程都至关重要,这些过程范围从流体分离到离子通道调节的细胞过程。要想对这些现象有基本的了解,就需要用到具有明确可控结构特性的模型纳米通道。由于碳纳米管的化学性质和结构简单、石墨壁的原子级光滑度和化学惰性以及其直径和长度的可调变性,它们成为了纳米流体研究的理想选择。在这里,我们研究了单盐和(首次研究了)二元盐混合物通过作为氮化硅膜中唯一孔的窄碳纳米管的选择性传输。我们证明,带负电荷的羧酸基团是碳纳米管孔离子排斥性能的原因,并且可以通过改变溶液 pH 值来调节小盐的离子渗透。在压力驱动流中,对于具有常见阳离子的二元电解质,我们考察了溶液组成和离子价态的影响,结果表明,在快速扩散的单价阴离子溶液中加入扩散速度较慢的多价阴离子会有利于单价阴离子的渗透。加入的多价阴离子的分数和价数越大,单价阴离子的排斥率越低。在某些情况下,我们在低单价离子含量下观察到了负排斥现象。

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