Yayın:
Iron oxide - poly(m-anthranilic acid)-poly(e-caprolactone) electrospun composite nanofibers: fabrication and properties

dc.contributor.authorHuner, Keziban
dc.contributor.authorSarac, Baran
dc.contributor.authorYuece, Eray
dc.contributor.authorRezvan, Amir
dc.contributor.authorMicusik, Matej
dc.contributor.authorOmastova, Maria
dc.contributor.authorEckert, Juergen
dc.contributor.authorSarac, A. Sezai
dc.date.accessioned2026-06-27T14:50:57Z
dc.date.issued2023
dc.description.abstractThe inclusion of iron and carboxylic acid-functionalized polyaniline into polymeric polycaprolactone structures is expected to enhance the electron-donating ability which in turn increases the compound conductivity and may induce reversible redox chemistry, allowing them to be used in electrochemical immunosensors. Iron oxide-containing poly(m-anthranilic acid) (P3ANA)-polycaprolactone (PCL) composite nanofibers were electrospun and investigated by structural, morphological, chemical composition, and electrochemical analyses. The findings confirm that blending polymers of different characteristics and ratios improves morphologic homogeneity and electrical (impedimetric) properties. Frequency-dependent electrochemical investigation using electrochemical impedance spectroscopy shows remarkable changes in the percentage of polymer contents, particularly when Fe2O3 and Fe3O4 are present. The modifications in the chemical state of the samples confirmed by the C-O and C=O peaks are analyzed by means of X-ray photoelectron spectroscopy. Hence, this study presents a new composite structure, iron (in two forms) P3ANA/PCL composite nanofibers, and the assessment of their intrinsic properties enabling the discovery of possible application fields in biomedical and sensor applications.en
dc.description.sponsorshipAustrian Science Fund (FWF) [I3937-N36]
dc.description.sponsorshipEuropean Research Council [ERC-2013-ADG-340025, ERC-2019-PoC-862485]
dc.description.sponsorshipVEGA project [02/0006/22]
dc.description.sponsorshipResearch & Innovation Operational Programme - ERDF [313021T081]
dc.description.urihttps://doi.org/10.1039/d2me00181k
dc.identifier.doi10.1039/d2me00181k
dc.identifier.endpage406
dc.identifier.issn2058-9689
dc.identifier.issue3
dc.identifier.startpage394
dc.identifier.urihttps://hdl.handle.net/20.500.14981/65513
dc.identifier.volume8
dc.identifier.wos000893894700001
dc.language.isoeng
dc.publisherROYAL SOC CHEMISTRY
dc.relation.ispartofMOLECULAR SYSTEMS DESIGN & ENGINEERING
dc.subjectELECTROCHEMICAL IMPEDANCE
dc.subjectPOLYANTHRANILIC ACID
dc.subjectIMMOBILIZATION
dc.subjectNANOPARTICLES
dc.subjectCYTOTOXICITY
dc.subjectOSTEOGENESIS
dc.subjectPERFORMANCE
dc.subjectLIPOSOMES
dc.subjectSCAFFOLD
dc.subjectFE2O3
dc.subjectChemistry
dc.subjectEngineering
dc.subjectScience & Technology - Other Topics
dc.subjectMaterials Science
dc.titleIron oxide - poly(m-anthranilic acid)-poly(e-caprolactone) electrospun composite nanofibers: fabrication and properties
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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