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dc.contributor.authorAteş, Murat
dc.contributor.authorYıldırım, M.
dc.date.accessioned2022-05-11T14:03:24Z
dc.date.available2022-05-11T14:03:24Z
dc.date.issued2020
dc.identifier.issn0170-0839
dc.identifier.urihttps://doi.org/10.1007/s00289-019-02850-8
dc.identifier.urihttps://hdl.handle.net/20.500.11776/4691
dc.description.abstractAbstract: In this work, reduced graphene oxide (rGO) was obtained by chemical reduction of graphene oxide (GO) using sodium borohydride (NaBH4). Four different nanocomposites rGO/ruthenium oxide (RuO2), rGO/polyaniline (PANI), RuO2/PANI and rGO/RuO2/PANI were chemically synthesized. In addition, PANI-based nanocomposites were synthesized by in situ polymerization technique. Nanocomposites were examined by different methods such as Fourier transform infrared spectroscopy–attenuated transmission reflectance, UV–Vis spectrophotometer, scanning electron microscopy–energy-dispersive X-ray analysis, thermal analysis (TGA–DTA) and transmission electron microscopy. TGA–DTA results show that the decomposition of rGO/RuO2/PANI nanocomposite (27.2% at 788.8 °C) was less than that of rGO (1% at 779.7 °C), which confirms the successful synthesis of nanocomposites. These nanocomposites can be used in supercapacitor applications. Supercapacitor device performances were taken by cyclic voltammetry (CV), galvanostatic constant current and electrochemical impedance spectroscopy (EIS) via two-electrode configuration. Ragone plots were drawn to observe energy and power densities of supercapacitor devices. Stability tests were taken by CV method for 1000 cycles. A ternary rGO/RuO2/PANI nanocomposite yields higher specific capacitance as Csp = 723.09 F g?1 than rGO/RuO2 (Csp = 347.28 F g?1), rGO/PANI (Csp = 159.62 F g?1), RuO2/PANI (Csp = 40.2 F g?1) and rGO (Csp = 37.5 F g?1) at 2 mV/s by CV method. A new electrical circuit model of LR(C(R(CR))) was used to analyze EIS data for rGO, rGO/PANI, rGO/RuO2, RuO2/PANI and rGO/RuO2/PANI nanocomposites. These nanocomposites demonstrate remarkable properties for use as electroactive materials for supercapacitor applications. Graphic abstract: [Figure not available: see fulltext.]. © 2019, Springer-Verlag GmbH Germany, part of Springer Nature.en_US
dc.language.isoengen_US
dc.publisherSpringeren_US
dc.identifier.doi10.1007/s00289-019-02850-8
dc.rightsinfo:eu-repo/semantics/closedAccessen_US
dc.subjectNanocompositeen_US
dc.subjectPolyanilineen_US
dc.subjectPower densityen_US
dc.subjectRuthenium oxideen_US
dc.subjectSupercapacitoren_US
dc.subjectTernary compositeen_US
dc.subjectCyclic voltammetryen_US
dc.subjectElectric network analysisen_US
dc.subjectElectrochemical impedance spectroscopyen_US
dc.subjectEnergy dispersive X ray analysisen_US
dc.subjectFourier transform infrared spectroscopyen_US
dc.subjectGrapheneen_US
dc.subjectHigh resolution transmission electron microscopyen_US
dc.subjectNanocompositesen_US
dc.subjectPolyanilineen_US
dc.subjectScanning electron microscopyen_US
dc.subjectSodium Borohydrideen_US
dc.subjectSupercapacitoren_US
dc.subjectThermoanalysisen_US
dc.subjectX ray diffraction analysisen_US
dc.subjectAttenuated transmissionsen_US
dc.subjectElectrical circuit modelsen_US
dc.subjectElectroactive materialen_US
dc.subjectPower densitiesen_US
dc.subjectReduced graphene oxides (RGO)en_US
dc.subjectRuthenium oxideen_US
dc.subjectSupercapacitor applicationen_US
dc.subjectTernary compositesen_US
dc.subjectRuthenium compoundsen_US
dc.titleThe synthesis of rGO/RuO2, rGO/PANI, RuO2/PANI and rGO/RuO2/PANI nanocomposites and their supercapacitorsen_US
dc.typearticleen_US
dc.relation.ispartofPolymer Bulletinen_US
dc.departmentFakülteler, Fen Edebiyat Fakültesi, Kimya Bölümüen_US
dc.identifier.volume77en_US
dc.identifier.issue5en_US
dc.identifier.startpage2285en_US
dc.identifier.endpage2307en_US
dc.institutionauthorAteş, Murat
dc.institutionauthorYıldırım, M.
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanıen_US
dc.authorscopusid9735216100
dc.authorscopusid57205653764
dc.identifier.wosWOS:000521568400006en_US
dc.identifier.scopus2-s2.0-85068030178en_US


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