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However, these membranes appeared rather unstable during long\u2010term operation in water with a tendency to swell over time. Membranes produced from pristine, stable, layered graphene materials may overcome these limitations while providing high\u2010level performance. In this paper, an efficient and \u201cgreen\u201d strategy is proposed to fabricate \u00b5m\u2010thick, graphene\u2010based laminates by liquid phase exfoliation in Cyrene and vacuum filtration on a PVDF support. The membranes appear structurally robust and mechanically stable, even after 90 days of operation in water. In ion transport studies, the membranes show size selection (&gt;3.3 \u00c5) and anion\u2010selectivity via the positively charged nanochannels forming the graphene laminate. In antibiotic (tetracycline) diffusion studies under dynamic conditions, the membrane achieve rejection rates higher than 95%. Sizable antibacterial properties are demonstrated in contact method tests with <jats:italic>Staphylococcus aureus<\/jats:italic> and <jats:italic>Escherichia coli<\/jats:italic> bacteria. Overall, these \u201cgreen\u201d graphene\u2010based membranes represent a viable option for future water management applications.<\/jats:p>","DOI":"10.1002\/adfm.202214889","type":"journal-article","created":{"date-parts":[[2023,3,9]],"date-time":"2023-03-09T23:31:00Z","timestamp":1678404660000},"update-policy":"https:\/\/doi.org\/10.1002\/crossmark_policy","source":"Crossref","is-referenced-by-count":33,"title":["Stable Graphene Membranes for Selective Ion Transport and Emerging Contaminants Removal in Water"],"prefix":"10.1002","volume":"33","author":[{"given":"Siva Nemala","family":"Sankar","sequence":"first","affiliation":[{"name":"International Iberian Nanotechnology Laboratory  4715\u2010330 Braga Portugal"}]},{"given":"Jo\u00e3o","family":"Fernandes","sequence":"additional","affiliation":[{"name":"International Iberian Nanotechnology Laboratory  4715\u2010330 Braga Portugal"}]},{"given":"Mar\u00edlia Barreiros","family":"dos 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