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氧化石墨烯膜的选择性离子渗透。

Selective ion penetration of graphene oxide membranes.

机构信息

Department of Mechanical Engineering, Key Laboratory for Advanced Manufacturing by Materials Processing Technology, Tsinghua University, Beijing 100084, China.

出版信息

ACS Nano. 2013 Jan 22;7(1):428-37. doi: 10.1021/nn304471w. Epub 2012 Dec 12.

Abstract

The selective ion penetration and water purification properties of freestanding graphene oxide (GO) membranes are demonstrated. Sodium salts permeated through GO membranes quickly, whereas heavy-metal salts infiltrated much more slowly. Interestingly, copper salts were entirely blocked by GO membranes, and organic contaminants also did not infiltrate. The mechanism of the selective ion-penetration properties of the GO membranes is discussed. The nanocapillaries formed within the membranes were responsible for the permeation of metal ions, whereas the coordination between heavy-metal ions with the GO membranes restricted the passage of the ions. Finally, the penetration processes of hybrid aqueous solutions were investigated; the results revealed that sodium salts can be separated effectively from copper salts and organic contaminants. The presented results demonstrate the potential applications of GO in areas such as barrier separation and water purification.

摘要

独立式氧化石墨烯(GO)膜具有选择性离子渗透和水净化性能。钠离子能够快速渗透通过 GO 膜,而重金属盐则渗透得非常缓慢。有趣的是,GO 膜完全阻挡了铜盐的渗透,同时也阻止了有机污染物的渗透。本文讨论了 GO 膜选择性离子渗透性能的机制。膜内形成的纳米毛细管负责金属离子的渗透,而重金属离子与 GO 膜之间的配位作用则限制了离子的通过。最后,研究了混合水溶液的渗透过程,结果表明可以有效地将钠盐与铜盐和有机污染物分离。研究结果表明,GO 在阻隔分离和水净化等领域具有潜在的应用。

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