膜
纳米技术
石墨烯
材料科学
纳米-
氧化物
离子键合
分子动力学
纳米流体学
化学工程
化学
离子
复合材料
工程类
计算化学
有机化学
生物化学
冶金
作者
Can Zhou,Chuangqi Zhao,Zhidong Nie,Tianxu Zhou,Shengwen Kong,Yingzhi Sun,Qian Cheng,Tianyi Zhao,Mingjie Liu
标识
DOI:10.1002/anie.202410441
摘要
Two-dimensional (2D) nanosheets-based membranes, which have controlled 2D nano-confined channels, are highly desirable for molecular/ionic sieving and confined reactions. However, it is still difficult to develop an efficient method to prepare large-area membranes with high stability, high orientation, and accurately adjustable interlayer spacing. Here, we present a strategy to produce metal ion cross-linked membranes with precisely controlled 2D nano-confined channels and high stability in different solutions using superspreading shear-flow-induced assembly strategy. For example, membranes based on graphene oxide (GO) exhibit interlayer spacing ranging from 8.0±0.1 Å to 10.3±0.2 Å, with a precision of down to 1 Å. At the same time, the value of the orientation order parameter (f) of GO membranes is up to 0.95 and GO membranes exhibit superb stability in different solutions. The strategy we present, which can be generalized to the preparation of 2D nano-confined channels based on a variety of 2D materials, will expand the application scope and provide better performances of membranes.
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