膜
层状结构
气体分离
材料科学
选择性
巴勒
分子动力学
化学工程
磁导率
纳米技术
化学
催化作用
计算化学
有机化学
复合材料
生物化学
工程类
作者
Li Ding,Yanying Wei,Libo Li,Tao Zhang,Haihui Wang,Jian Xue,Liang-Xin Ding,Suqing Wang,Jürgen Caro,Yury Gogotsi
标识
DOI:10.1038/s41467-017-02529-6
摘要
Molecular sieving membranes with sufficient and uniform nanochannels that break the permeability-selectivity trade-off are desirable for energy-efficient gas separation, and the arising two-dimensional (2D) materials provide new routes for membrane development. However, for 2D lamellar membranes, disordered interlayer nanochannels for mass transport are usually formed between randomly stacked neighboring nanosheets, which is obstructive for highly efficient separation. Therefore, manufacturing lamellar membranes with highly ordered nanochannel structures for fast and precise molecular sieving is still challenging. Here, we report on lamellar stacked MXene membranes with aligned and regular subnanometer channels, taking advantage of the abundant surface-terminating groups on the MXene nanosheets, which exhibit excellent gas separation performance with H
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