4.7 Article

Controlling assembly behaviors of laminar GO membranes in organic solvents by altering GO-solvent interactions

期刊

JOURNAL OF MEMBRANE SCIENCE
卷 640, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.memsci.2021.119841

关键词

Graphene oxide membrane; Assembly behavior; Organic solvent; Nanofiltration

资金

  1. National Natural Science Foundation of China [22008182, 21974097, 51803039]
  2. Key Laboratory of Higher Education of Guangdong Province [2020KSYS004]
  3. Key Field Special Project of Higher Education of Guangdong Province [2020ZDZX2015]
  4. Natural Science Foundation of Guangdong Province [2021A1515010376]
  5. Basic and Applied Basic Research Foundation of Guangdong Province [2019A1515111191]
  6. Ordinary University Youth Innovative Talents Project of Guangdong Province [2019KQNCX162]
  7. Undergraduate Training Program for Innovation and Entrepreneurship of Guangdong Province
  8. Science and Technology Bureau of Jiangmen [2019030102360012639, 2020030102730008711]

向作者/读者索取更多资源

A simple method was reported to control the assembly behavior of laminar GO membranes in organic solvents by altering GO-solvent interactions. Experimental and theoretical studies showed that the dispersion properties of GO nanosheets in different organic solvents determined their assembly behaviors. GO membranes built up with good solvents assistant assembly exhibited competitive organic solvent nanofiltration performances.
Two-dimensional graphene oxide (GO) membranes are promising for molecular-scale separations. Laminar GO membranes usually involve liquid phase fabrications in aqueous solvents, whereas their assembly behaviors in organic solvents remain unexplored. Herein, we report a simple methodology for controlling assembly behaviors of laminar GO membranes in organic solvents by altering GO-solvent interactions. We experimentally and theoretically demonstrated that, governed by the competition between GO-solvent intermolecular interaction and GO intramolecular interaction, GO nanosheets displayed deverse disperse properties in different organic solvents, thereby determining their distinct assembly behaviors. Moreover, the membrane formation and structure and their relations to transport properties were studied through detailed investigations of laminar GO membranes assembled in selected organic solvents. The uniform and intact GO membranes built up by good solvents assistant assembly featured competitive organic solvent nanofiltration (OSN) performances. For example, the GO(DMSO) membrane exhibited permeance of 66-76 L m(-2) bar(-1) of methanol and rejection of more than 95% of dyes with molecular weights >600 g mol(-1), and the GO(DMF) membrane achieved permeance of 26-32 L m(-2) h(-1) bar(-1) of methanol and rejection of more than 95% of dyes with molecular weights >400 g mol(-1). This work elucidates the property-structure-performance relationships of laminar GO membranes assembled in organic solvents, offering a straightforward paradigm for controllable assembly of laminar 2D-material membranes via facile solvents selection.

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