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dc.contributor.authorWang, J.
dc.contributor.authorZhu, J.
dc.contributor.authorTsehaye, M.
dc.contributor.authorLi, J.
dc.contributor.authorDong, G.
dc.contributor.authorYuan, S.
dc.contributor.authorLi, X.
dc.contributor.authorZhang, Y.
dc.contributor.authorLiu, Jian
dc.contributor.authorVan Der Bruggen, B.
dc.date.accessioned2018-12-13T09:08:01Z
dc.date.available2018-12-13T09:08:01Z
dc.date.created2018-12-12T02:46:49Z
dc.date.issued2017
dc.identifier.citationWang, J. and Zhu, J. and Tsehaye, M. and Li, J. and Dong, G. and Yuan, S. and Li, X. et al. 2017. High flux electroneutral loose nanofiltration membranes based on rapid deposition of polydopamine/polyethyleneimine. Journal of Materials Chemistry A. 5 (28): pp. 14847-14857.
dc.identifier.urihttp://hdl.handle.net/20.500.11937/70869
dc.identifier.doi10.1039/c7ta02661g
dc.description.abstract

© 2017 The Royal Society of Chemistry. A rational manipulation of the surface structures and properties of thin-film composite membranes is important to optimize their separation performance and service durability. In this study, a facile strategy is reported for fabricating electroneutral loose nanofiltration membranes based on the rapid co-deposition of biomimetic adhesive polydopamine and poly(ethylene imine) (PEI) by using CuSO4/H2O2as a trigger. Through this strategy, the surface properties and the filtration performance of the membranes can be easily tailored by the addition of PEI and CuSO4/H2O2, as well as tuning the deposition time. UV, XPS, SEM, AFM, zeta potential, water contact angle and nanofiltration measurements were used to investigate membrane performance. Surface characterization revealed that overall enhanced surface properties including low roughness, favourable hydrophilicity, and relatively neutral charge can be achieved after the addition of PEI. The optimum membranes, with 1 h co-deposition of PDA and PEI, show an ultrahigh water permeability (26.2 L m-2h-1bar-1), distinguished rejection for both negatively and positively charged dyes and a high permeation of divalent salts (>90%). Furthermore, the optimum membranes also show excellent operational stability in long-term nanofiltration operations in alkaline solution. This study provides an efficient and facile approach to tailor the membrane properties and structure for loose nanofiltration membranes.

dc.publisherR S C Publications
dc.titleHigh flux electroneutral loose nanofiltration membranes based on rapid deposition of polydopamine/polyethyleneimine
dc.typeJournal Article
dcterms.source.volume5
dcterms.source.number28
dcterms.source.startPage14847
dcterms.source.endPage14857
dcterms.source.issn2050-7488
dcterms.source.titleJournal of Materials Chemistry A
curtin.departmentWASM: Minerals, Energy and Chemical Engineering (WASM-MECE)
curtin.accessStatusFulltext not available


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