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Ti3C2Tx Mxene/Halloysite Nanotube Functionalized Films for Antibacterial Applications

dc.authorid Karatas, Erkan/0000-0001-5290-6750
dc.authorid Topuz, Mehmet/0000-0003-3692-796X
dc.authorid Akinay, Yuksel/0000-0002-6171-6307
dc.authorscopusid 57201986156
dc.authorscopusid 57414812900
dc.authorscopusid 57814890900
dc.authorscopusid 56401010700
dc.authorscopusid 57205701799
dc.authorwosid Topuz, Mehmet/C-9690-2018
dc.authorwosid Topuz, Mehmet/C-9690-2018
dc.authorwosid Akinay, Yuksel/I-8092-2019
dc.authorwosid Çetin, Tayfun/Hkw-4891-2023
dc.authorwosid Karatas, Erkan/Jqw-8233-2023
dc.contributor.author Topuz, Mehmet
dc.contributor.author Karatas, Erkan
dc.contributor.author Ruzgar, Damla
dc.contributor.author Akinay, Yuksel
dc.contributor.author Cetin, Tayfun
dc.date.accessioned 2025-07-30T16:31:55Z
dc.date.available 2025-07-30T16:31:55Z
dc.date.issued 2025
dc.department T.C. Van Yüzüncü Yıl Üniversitesi en_US
dc.department-temp [Topuz, Mehmet] Van Yuzuncu Yil Univ, Dept Mech Engn, TR-65080 Van, Turkiye; [Karatas, Erkan; Ruzgar, Damla] Erzurum Tech Univ, Dept Mol Biol & Genet, Erzurum, Turkiye; [Akinay, Yuksel] Van Yuzuncu Yil Univ, Min Engn Dept, TR-65080 Van, Turkiye; [Cetin, Tayfun] Hakkari Univ, Dept Elect & Energy, Hakkari, Turkiye en_US
dc.description Karatas, Erkan/0000-0001-5290-6750; Topuz, Mehmet/0000-0003-3692-796X; Akinay, Yuksel/0000-0002-6171-6307; en_US
dc.description.abstract In the study, chitosan (CS)-based Ti3C2Tx MXene/Halloysite nanotube (HNT) films were successfully synthesized using the solution casting method. The prepared films were characterized morphologically and structurally. To measure the surface wettability of the films for potential biological applications, contact angles were measured in simulated body fluid. The bacterial viability and antibacterial properties on Gram-negative (E. coli) and Gram-positive (S. aureus) bacteria were evaluated by CFU counting, and statistical analyses were performed using ANOVA. The HNT particles with a size of about 30-40 nm were homogeneously anchored onto MXene layers without partial agglomerations. The presence of micropores and functional end groups in the prepared films contributes to their antibacterial effect. The incorporation of HNT into the chitosan MXene film provided a hydrophilic character by decreasing the contact angle from 82.26 degrees to 49.47 degrees. Antibacterial evaluation revealed that the film exhibited high inhibition for E. coli (34.63%) and S. aureus (63%) due to the synergistic effect between HNT and MXene. These findings highlight the potential of the developed film as an antibacterial material for biomedical applications. en_US
dc.description.woscitationindex Science Citation Index Expanded
dc.identifier.doi 10.1080/09205063.2025.2522746
dc.identifier.issn 0920-5063
dc.identifier.issn 1568-5624
dc.identifier.pmid 40566733
dc.identifier.scopus 2-s2.0-105009465597
dc.identifier.scopusquality Q2
dc.identifier.uri https://doi.org/10.1080/09205063.2025.2522746
dc.identifier.uri https://hdl.handle.net/20.500.14720/28069
dc.identifier.wos WOS:001517886000001
dc.identifier.wosquality Q2
dc.language.iso en en_US
dc.publisher Taylor & Francis Ltd en_US
dc.relation.publicationcategory Makale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanı en_US
dc.rights info:eu-repo/semantics/closedAccess en_US
dc.subject Chitosan en_US
dc.subject Halloysite Nanotubes en_US
dc.subject Ti3C2Tx Mxene en_US
dc.subject Antibacterial Applications en_US
dc.title Ti3C2Tx Mxene/Halloysite Nanotube Functionalized Films for Antibacterial Applications en_US
dc.type Article en_US

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