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Mussel-inspired strategy towards functionalized reduced graphene oxide-crosslinked polysulfone-based anion exchange membranes with enhanced properties

机译:贻贝启发的功能增强的功能化还原氧化石墨烯交联聚砜基阴离子交换膜的策略

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Chemical crosslinking is regard as an effective method to balance the ionic conductivity and dimensional stability of anion exchange membranes (AEMs). In this work, a series of crosslinked AEM composite membranes based on polydopamine-functionalized reduced graphene oxide (PDArGO) were constructed from quaternized polysulfone (QPSU) with amino groups via mussel-inspired chemistry strategy. On the one hand, as the dopant, the hydrogen bonding interaction between PDArGO and a large number of amino groups on the side chains of QPSU can enhance the water uptake of the membranes and has a positive influence on the ionic conductivity of composite membranes. On the other hand, PDArGO also acts as the crosslinker, which can form a micro-crosslinked structure with the amino groups on the side chains of the polymer through the Michael addition/schiff base reactions. Under the combined influence of the above two factors, the crosslinked composite AEMs exhibited special delightful properties. In general, the crosslinking reaction will lead to the decrease of the ionic conductivity of the membranes, but as for the membranes prepared by us, the ionic conductivity had been improved to some extent. Especially, the QPSU-1.5%-PDArGO exhibited 57% improvement in the hydroxide conductivity than that of pure QPSU membrane and reached the highest value of 61 mS cm(-1) at 80 degrees C. Besides, the crosslinked membranes also exhibited strong dimensional stability, good mechanical strength, comparable alkaline stability and improved methanol permeability. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:化学交联被认为是平衡阴离子交换膜(AEM)的离子电导率和尺寸稳定性的有效方法。在这项工作中,通过基于贻贝的化学策略,从具有氨基的季铵化聚砜(QPSU)构建了一系列基于聚多巴胺官能化的氧化石墨烯(PDArGO)的交联AEM复合膜。一方面,PDArGO与QPSU侧链上的大量氨基之间的氢键相互作用作为掺杂剂,可以提高膜的吸水率,并对复合膜的离子电导率产生积极影响。另一方面,PDArGO还充当交联剂,可以通过迈克尔加成/席夫碱反应与聚合物侧链上的氨基形成微交联结构。在上述两个因素的共同影响下,交联复合材料AEM表现出特殊的令人愉悦的性能。通常,交联反应将导致膜的离子电导率降低,但是对于我们制备的膜,其离子电导率已有一定程度的提高。特别是,QPSU-1.5%-PDArGO的氢氧化物电导率比纯QPSU膜提高了57%,并且在80摄氏度时达到了61 mS cm(-1)的最高值。此外,交联膜还表现出强的尺寸稳定性,良好的机械强度,相当的碱性稳定性和改善的甲醇渗透性。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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