MXene molecular sieving membranes for highly efficient gas separation
Abstract 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 H2 permeability >2200 Barrer and H2/CO2 selectivity >160, superior to the state-of-the-art membranes. The results of molecular dynamics simulations quantitatively support the experiments, confirming the subnanometer interlayer spacing between the neighboring MXene nanosheets as molecular sieving channels for gas separation.
Related papers
Sharing this paper's topic and concept tags, via OpenAlex. These aren't in Graze — they link straight out to the source.
Hydrogen separation and purification with poly (4-methyl-1-pentyne)/MIL 53 mixed matrix membrane based on reverse selectivity
Reza Abedini, Mohammadreza Omidkhah, Fatereh Dorosti · International Journal of Hydrogen Energy · 2014
Highly permeable polyimides incorporating Tröger's base (TB) units for gas separation membranes
Xiaofan Hu, Won Hee Lee, Joon Yong Bae, Jiayi Zhao · Journal of Membrane Science · 2020
Preparation of Mixed Matrix Membranes Containing ZIF-8 and UiO-66 for Multicomponent Light Gas Separation
Eun Young Kim, Hyun Su Kim, Donghwi Kim, Jinsoo Kim · Crystals · 2018
Bifunctionalized Intrinsically Microporous Polyimides with Simultaneously Enhanced Gas Permeability and Selectivity
Xiaohua Ma, Mohsin Mukaddam, Ingo Pinnau · Macromolecular Rapid Communications · 2016
0 Comments
The summary above is machine-written and the abstract is the authors' own pitch. This is where people who read the paper say what it actually found, what the summary missed, and which part is worth your time.
Log in to join the discussion.