Iron-Oxide-Nanoparticles-Doped Polyaniline Composite Thin Films

Iron-oxide-doped polyaniline (PANI-IO) thin films were obtained by the polymerization of aniline monomers and iron oxide solutions in direct current glow discharge plasma in the absence of a buffer gas for the first time. The PANI-IO thin films were deposited on optical polished Si wafers in order t...

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Published inPolymers Vol. 14; no. 9; p. 1821
Main Authors Butoi, Bogdan, Ciobanu, Carmen Steluta, Iconaru, Simona Liliana, Negrilă, Constantin Cătălin, Badea, Madalina Andreea, Balas, Mihaela, Dinischiotu, Anca, Predoi, Gabriel, Bita, Bogdan, Groza, Andreea, Predoi, Daniela
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Abstract Iron-oxide-doped polyaniline (PANI-IO) thin films were obtained by the polymerization of aniline monomers and iron oxide solutions in direct current glow discharge plasma in the absence of a buffer gas for the first time. The PANI-IO thin films were deposited on optical polished Si wafers in order to study surface morphology and evaluate their in vitro biocompatibility. The characterization of the coatings was accomplished using scanning electron microscopy (SEM), Fourier-transform infrared spectroscopy (FTIR), atomic force microscopy (AFM), metallographic microscopy (MM), and X-ray photoelectron spectroscopy (XPS). In vitro biocompatibility assessments were also conducted on the PANI-IO thin films. It was observed that a uniform distribution of iron oxide particles inside the PANI layers was obtained. The constituent elements of the coatings were uniformly distributed. The Fe-O bonds were associated with magnetite in the XPS studies. The surface morphology of the PANI-IO thin films was assessed by atomic force microscopy (AFM). The AFM topographies revealed that PANI-IO exhibited the morphology of a uniformly distributed and continuous layer. The viability of Caco-2 cells cultured on the Si substrate and PANI-IO coating was not significantly modified compared to control cells. Moreover, after 24 h of incubation, we observed no increase in LDH activity in media in comparison to the control. In addition, our results revealed that the NO levels for the Si substrate and PANI-IO coating were similar to those found in the control sample.
AbstractList Iron-oxide-doped polyaniline (PANI-IO) thin films were obtained by the polymerization of aniline monomers and iron oxide solutions in direct current glow discharge plasma in the absence of a buffer gas for the first time. The PANI-IO thin films were deposited on optical polished Si wafers in order to study surface morphology and evaluate their in vitro biocompatibility. The characterization of the coatings was accomplished using scanning electron microscopy (SEM), Fourier-transform infrared spectroscopy (FTIR), atomic force microscopy (AFM), metallographic microscopy (MM), and X-ray photoelectron spectroscopy (XPS). In vitro biocompatibility assessments were also conducted on the PANI-IO thin films. It was observed that a uniform distribution of iron oxide particles inside the PANI layers was obtained. The constituent elements of the coatings were uniformly distributed. The Fe-O bonds were associated with magnetite in the XPS studies. The surface morphology of the PANI-IO thin films was assessed by atomic force microscopy (AFM). The AFM topographies revealed that PANI-IO exhibited the morphology of a uniformly distributed and continuous layer. The viability of Caco-2 cells cultured on the Si substrate and PANI-IO coating was not significantly modified compared to control cells. Moreover, after 24 h of incubation, we observed no increase in LDH activity in media in comparison to the control. In addition, our results revealed that the NO levels for the Si substrate and PANI-IO coating were similar to those found in the control sample.
Author Dinischiotu, Anca
Predoi, Gabriel
Negrilă, Constantin Cătălin
Badea, Madalina Andreea
Balas, Mihaela
Ciobanu, Carmen Steluta
Bita, Bogdan
Iconaru, Simona Liliana
Predoi, Daniela
Groza, Andreea
Butoi, Bogdan
AuthorAffiliation 2 National Institute of Materials Physics, Atomistilor Street No. 405A, P.O. Box MG 07, Magurele, 077125 Bucharest, Romania; ciobanucs@gmail.com (C.S.C.); simonaiconaru@gmail.com (S.L.I.); catalin.negrila@infim.ro (C.C.N.)
3 Department of Biochemistry and Molecular Biology, Faculty of Biology, University of Bucharest, 91–95 Splaiul Independentei, 050095 Bucharest, Romania; madalina-andreea.badea@bio.unibuc.ro (M.A.B.); mihaela.balas@bio.unibuc.ro (M.B.); anca.dinischiotu@bio.unibuc.ro (A.D.)
4 Faculty of Veterinary Medicine, University of Agronomic Sciences and Veterinary Medicine of Bucharest, 105 Splaiul Independentei, Sector 5, 050097 Bucharest, Romania; gabrielpredoi2017@gmail.com
1 National Institute for Laser, Plasma and Radiation Physics, 409 Atomistilor Street, P.O. Box MG 36, Magurele, 077125 Bucharest, Romania; bogdan.butoi@inflpr.ro (B.B.); bogdan.bita@inflpr.ro (B.B.)
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– name: 2 National Institute of Materials Physics, Atomistilor Street No. 405A, P.O. Box MG 07, Magurele, 077125 Bucharest, Romania; ciobanucs@gmail.com (C.S.C.); simonaiconaru@gmail.com (S.L.I.); catalin.negrila@infim.ro (C.C.N.)
– name: 3 Department of Biochemistry and Molecular Biology, Faculty of Biology, University of Bucharest, 91–95 Splaiul Independentei, 050095 Bucharest, Romania; madalina-andreea.badea@bio.unibuc.ro (M.A.B.); mihaela.balas@bio.unibuc.ro (M.B.); anca.dinischiotu@bio.unibuc.ro (A.D.)
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Issue 9
Keywords iron oxide
Caco-2 cells
morphology
biocompatibility
PANI
chemical composition
thin films
Language English
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Snippet Iron-oxide-doped polyaniline (PANI-IO) thin films were obtained by the polymerization of aniline monomers and iron oxide solutions in direct current glow...
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StartPage 1821
SubjectTerms Aniline
Atomic force microscopy
Biocompatibility
Biological activity
Caco-2 cells
Coatings
Direct current
Electrodes
Fibroblasts
Fourier transforms
Glow discharges
Graphene
Infrared spectroscopy
Investigations
Iron constituents
iron oxide
Iron oxides
Morphology
Nanocomposites
Nanoparticles
PANI
Photoelectrons
Plasma
Polyanilines
Polymerization
Polymers
Scanning electron microscopy
Sensors
Silicon substrates
Stem cells
Thin films
X ray photoelectron spectroscopy
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Title Iron-Oxide-Nanoparticles-Doped Polyaniline Composite Thin Films
URI https://www.ncbi.nlm.nih.gov/pubmed/35566991
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Volume 14
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