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dc.contributor.authorArvas, MELİH BEŞİR
dc.contributor.authorGENÇTEN, Metin
dc.contributor.authorŞAHİN, Yücel
dc.date.accessioned2023-02-21T08:42:06Z
dc.date.available2023-02-21T08:42:06Z
dc.identifier.citationArvas M. B., GENÇTEN M., ŞAHİN Y., "Investigation of supercapacitor properties of chlorine-containing functional groups doped graphene electrodes", JOURNAL OF ELECTROANALYTICAL CHEMISTRY, cilt.918, 2022
dc.identifier.issn1572-6657
dc.identifier.othervv_1032021
dc.identifier.otherav_202b9b43-8c8f-4766-b187-29f464da085d
dc.identifier.urihttp://hdl.handle.net/20.500.12627/186886
dc.identifier.urihttps://doi.org/10.1016/j.jelechem.2022.116438
dc.description.abstractIn this study, the supercapacitor performances of chlorine-containing functional groups-doped graphene-based electrodes, environmentally friendly synthesized in one step by Yucel's method, were investigated for the first time in the literature. The formation of graphene layers in the mesoporous structure was determined by scanning electron microscopy. Functional molecular groups such as-Cl,-ClO3,-ClO4, and hydroxyl formed on the electrode surface were characterized by X-ray photoelectron spectroscopy. Cyclic voltammetry and electrochemical impedance spectroscopy were used for the electrochemical characterization of the electrodes. In electrochemical impedance spectra, capacitance values and Warburg impedance values wereincreased by doping chlorine-containing functional groups to the graphene electrode surface. Besides, cyclic charge-discharge tests were also performed for 1000 cycles to determine the cyclic stability of the electrode materials. The electrodes lost an average of 5% of their capacitances at the end of the 1000 cycles. As the number of cycles increased during the synthesis of the electrodes, the quantity of different molecular functional groups on the surface increased. In this respect, the electrode surface became more accessible for electrolyte penetration as a function of the increasing cycle. Eventually, the areal capacitance of the electrodes demonstrated an increasingly changing from 248.5 mF.cm(-2) to 2531 mF.cm(-2) at a current density of 10 mA.cm(-2 )with respect to their chemical and physical structure.
dc.language.isoeng
dc.subjectKimya (çeşitli)
dc.subjectKİMYA, ANALİTİK
dc.subjectKimya
dc.subjectTemel Bilimler (SCI)
dc.subjectELEKTROKİMYA
dc.subjectAnalitik Kimya
dc.subjectFizikokimya
dc.subjectElektrokimya
dc.subjectTemel Bilimler
dc.subjectGenel Kimya
dc.subjectFiltrasyon ve Ayırma
dc.subjectFizik Bilimleri
dc.titleInvestigation of supercapacitor properties of chlorine-containing functional groups doped graphene electrodes
dc.typeMakale
dc.relation.journalJOURNAL OF ELECTROANALYTICAL CHEMISTRY
dc.contributor.departmentYıldız Teknik Üniversitesi , Kimya-Metalurji Fakültesi , Met.Ve Malzeme Müh.Böl.
dc.identifier.volume918
dc.contributor.firstauthorID4065165


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