Regularly channeled MXene membranes for ionic and molecular separation
Jingchong Liu, Nü Wang
Regularly channeled MXene membranes for ionic and molecular separation
[1] |
Liu J, Wang L, Wang N, Guo F, Hou L, Chen Y, Liu J, Zhao Y, Jiang L. A robust Cu(OH)2 nanoneedles mesh with tunable wettability for nonaqueous multiphase liquid separation. Small, 2017, 13(4): 1600499
CrossRef
Google scholar
|
[2] |
Hou L, Wang N, Wu J, Cui Z, Jiang L, Zhao Y. Bioinspired superwettability electrospun micro/nanofibers and their applications. Advanced Functional Materials, 2018, 28(49): 1801114
CrossRef
Google scholar
|
[3] |
Mi B. Graphene oxide membranes for ionic and molecular sieving. Science, 2014, 343(6172): 740–742
CrossRef
Google scholar
|
[4] |
Liu J, Wang N, Yu L J, Karton A, Li W, Zhang W, Guo F, Hou L, Cheng Q, Jiang L, Weitz D A, Zhao Y. Bioinspired graphene membrane with temperature tunable channels for water gating and molecular separation. Nature Communications, 2017, 8(1): 1–9
CrossRef
Google scholar
|
[5] |
Liu J, Yu L J, Yue G, Wang N, Cui Z, Hou L, Li J, Li Q, Karton A, Cheng Q, Jiang L, Zhao Y. Thermoresponsive graphene membranes with reversible gating regularity for smart fluid control. Advanced Functional Materials, 2019, 29(12): 1808501
CrossRef
Google scholar
|
[6] |
Wang J, Chen P, Shi B, Guo W, Jaroniec M, Qiao S. A regularly channeled lamellar membrane for unparalleled water and organics permeation. Angewandte Chemie International Edition, 2018, 57(23): 6814–6818
CrossRef
Google scholar
|
[7] |
Ding L, Wei Y, Li L, Zhang T, Wang H, Xue J, Ding L X, Wang S, Caro J, Gogotsi Y. MXene molecular sieving membranes for highly efficient gas separation. Nature Communications, 2018, 9(1): 1–7
CrossRef
Google scholar
|
[8] |
Naguib M, Kurtoglu M, Presser V, Lu J, Niu J, Heon M, Hultman L, Gogotsi Y, Barsoum M W. Two-dimensional nanocrystals produced by exfoliation of Ti3AlC2. Advanced Materials, 2011, 23(37): 4248–4253
CrossRef
Google scholar
|
[9] |
Liu J, Cui Z, Hou L, Li D, Gao Y, Shuai L, Liu J, Jin J, Wang N, Zhao Y. Bioinspired membranes for multi-phase liquid and molecule separation. Science China. Chemistry, 2019, 62(1): 14–23
CrossRef
Google scholar
|
[10] |
Liu J, Wang L, Guo F, Hou L, Chen Y, Liu J, Wang N, Zhao Y, Jiang L. Opposite and complementary: a superhydrophobic-superhydrophilic integrated system for high-flux, high-efficiency and continuous oil/water separation. Journal of Materials Chemistry. A, Materials for Energy and Sustainability, 2016, 4(12): 4365–4370
CrossRef
Google scholar
|
[11] |
Ding L, Li L, Liu Y, Wu Y, Lu Z, Deng J, Wei Y, Caro J, Wang H. Effective ion sieving with T3C2Tx mxene membranes for production of drinking water from seawater. Nature Sustainability, 2020, 3(4): 296–302
CrossRef
Google scholar
|
[12] |
Zhang C J, Pinilla S, McEcoy N, Cullen C P, Anasori B, Long E, Park S H, Seral A A, Shmeliov A, Krishnan D,
CrossRef
Google scholar
|
/
〈 | 〉 |