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具有电/pH 调制离子整流的 3D 多孔水凝胶/导电聚合物异质膜。

3D Porous Hydrogel/Conducting Polymer Heterogeneous Membranes with Electro-/pH-Modulated Ionic Rectification.

机构信息

School of Chemistry, Beihang University, Beijing, 100191, P. R. China.

CAS Key Laboratory of Bio-inspired Materials and Interfacial Science, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, 100190, P. R. China.

出版信息

Adv Mater. 2017 Nov;29(44). doi: 10.1002/adma.201702926. Epub 2017 Oct 12.

Abstract

Heterogeneous membranes composed of asymmetric structures or compositions have enormous potential in sensors, molecular sieves, and energy devices due to their unique ion transport properties such as ionic current rectification and ion selectivity. So far, heterogeneous membranes with 1D nanopores have been extensively studied. However, asymmetric structures with 3D micro-/nanoscale pore networks have never been investigated. Here, a simple and versatile approach to low-costly fabricate hydrogel/conducting polymer asymmetric heterogeneous membranes with electro-/pH-responsive 3D micro-/nanoscale ion channels is introduced. Due to the asymmetric heterojunctions between positively charged nanoporous polypyrrole (PPy) and negatively charged microscale porous hydrogel poly (acrylamide-co-acrylic acid) (P(AAm-co-AA)), the membrane can rectify ion transmembrane transport in response to both electro- and pH-stimuli. Numerical simulations based on coupled Poisson and Nernst-Plank equations are carried out to explain the ionic rectification mechanisms for the membranes. The membranes are not dependent on elaborately fabricated 1D ion channel substrates and hence can be facilely prepared in a low-cost and large-area way. The hybridization of hydrogel and conducting polymer offers a novel strategy for constructing low-cost, large-area and multifunctional membranes, expanding the tunable ionic rectification properties into macroscopic membranes with micro-/nanoscale pores, which would stimulate practical applications of the membranes.

摘要

由于具有独特的离子传输特性,如离子电流整流和离子选择性,由不对称结构或组成的异质膜在传感器、分子筛和能源器件中具有巨大的潜力。到目前为止,具有 1D 纳米孔的异质膜已经得到了广泛的研究。然而,具有 3D 微/纳米尺度孔网络的不对称结构从未被研究过。在这里,介绍了一种简单而通用的方法,可以低成本地制造具有电/pH 响应 3D 微/纳米尺度离子通道的水凝胶/导电聚合物不对称异质膜。由于带正电荷的纳米多孔聚吡咯(PPy)和带负电荷的微尺度多孔水凝胶聚丙烯酰胺-co-丙烯酸(P(AAm-co-AA))之间的不对称异质结,该膜可以对电和 pH 刺激做出响应,从而整流离子跨膜传输。基于耦合泊松和 Nernst-Plank 方程的数值模拟用于解释膜的离子整流机制。该膜不依赖于精心制造的 1D 离子通道基底,因此可以以低成本和大面积的方式轻松制备。水凝胶和导电聚合物的杂交为构建低成本、大面积和多功能膜提供了一种新策略,将可调谐的离子整流特性扩展到具有微/纳米尺度孔的宏观膜中,这将刺激膜的实际应用。

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