Projects per year
Abstract
Covalent modification is commonly used to tune the channel size and functionality of 2D membranes. However, common synthesis strategies used to produce such modifications are known to disrupt the structure of the membranes. Herein, we report less intrusive yet equally effective non-covalent modifications on Ti3C2Tx MXene membranes by a solvent treatment, where the channels are robustly decorated by protic solvents via hydrogen bond network. The densely functionalized (-O, -F, -OH) Ti3C2Tx channel allows multiple hydrogen bond establishment and its sub-1-nm size induces a nanoconfinement effect to greatly strengthen these interactions by maintaining solvent-MXene distance and solvent orientation. In sub-1-nm ion sieving and separation, as-decorated membranes exhibit stable ion rejection, and proton-cation (H+/Mn+) selectivity that is up to 50 times and 30 times, respectively, higher than that of pristine membranes. It demonstrates the feasibility of non-covalent methods as a broad modification alternative for nanochannels integrated in energy-, resource- and environment-related applications.
Original language | English |
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Article number | 4075 |
Number of pages | 9 |
Journal | Nature Communications |
Volume | 14 |
Issue number | 1 |
DOIs | |
Publication status | Published - Dec 2023 |
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ARC Research Hub for Energy-efficient Separation
Wang, H. (Primary Chief Investigator (PCI)), Zhang, X. (Chief Investigator (CI)), Duke, M. C. (Chief Investigator (CI)), Hill, M. (Chief Investigator (CI)), Leslie, G. L. (Chief Investigator (CI)), Diniz da Costa, J. C. (Chief Investigator (CI)), Gray, S. R. (Chief Investigator (CI)), Nghiem, L. (Chief Investigator (CI)), Millar, G. (Chief Investigator (CI)), Kong, L. (Chief Investigator (CI)), Liu, S. (Chief Investigator (CI)), Shon, H. K. (Chief Investigator (CI)), Le-Clech, P. (Chief Investigator (CI)), Zhang, L. (Chief Investigator (CI)), Hoadley, A. (Chief Investigator (CI)), Smart, S. (Chief Investigator (CI)), Dumee, L. (Partner Investigator (PI)), Thornton, A. W. (Partner Investigator (PI)), Ozcakmak, B. (Partner Investigator (PI)), Bury, P. (Partner Investigator (PI)), Stephen, G. (Partner Investigator (PI)), Fane, A. (Chief Investigator (CI)), Elimelech, M. (Partner Investigator (PI)), Pan, B. (Partner Investigator (PI)), Tao, S. (Partner Investigator (PI)), Horton, A. (Partner Investigator (PI)), Wu, X. (Partner Investigator (PI)), Forbes, M. (Partner Investigator (PI)), Hu, J. (Partner Investigator (PI)), Song, H. (Partner Investigator (PI)), Dixon, I. (Partner Investigator (PI)), Holt, S. A. (Partner Investigator (PI)), He, L. (Chief Investigator (CI)), Williams, C. (Partner Investigator (PI)), Hou, H. (Partner Investigator (PI)), Shen, W. (Chief Investigator (CI)), Wang, J. (Partner Investigator (PI)), Gao, L. (Partner Investigator (PI)), Davis, P. (Partner Investigator (PI)), Pham, H. (Partner Investigator (PI)), Muthukumarn, S. (Chief Investigator (CI)), Bustamante, H. (Partner Investigator (PI)) & Thang, S. H. (Chief Investigator (CI))
Barwon Region Water Corporation (trading as Barwon Water) (Victoria) , South East Water Corporation (trading as South East Water Ltd (SEWL) (Victoria), Tasmanian Water and Sewerage Corporation Pty Ltd (trading as Tas Water), Advanced Fuel Innovation Pty Ltd, CSL Behring (Australia), Yale University, 2D Water Pty Ltd, Activated Water Technologies Pty Ltd, Akvotek Pty Ltd, Bioactive Materials Pty Ltd, Australian Nuclear Science and Technology Organisation (ANSTO) , Arrow Bowen Pipeline Pty Ltd (trading as Arrow Energy), Baosteel Group Corporation, Ironwood Clean Energy Technologies Pty Limited (trading as: Carbon Technologies Australia), Shenzhen Innova Nanobody Company, Shanghai Boiler Works Co Limited, Shijiazhuang Chang’an Yucai Building Materials Ltd. Company, Zeolite Australia Pty Limited, University of Technology (UTS) Sydney
15/12/17 → 15/12/23
Project: Research
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Epitaxial Stacking of Nanoporous Nanosheets for Next-generation Membranes
Zhang, X. (Primary Chief Investigator (PCI))
1/01/22 → 1/01/22
Project: Research