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dc.contributor.authorAka, Cemal
dc.contributor.authorKıvrak, Burak
dc.contributor.authorTekşen, Fikret Alpay
dc.contributor.authorAkyıldız, Hasan
dc.contributor.authorAkgöl, Oğuzhan
dc.contributor.authorKaraaslan, Muharrem
dc.contributor.authorAkyol, Mustafa
dc.date.accessioned2024-01-09T08:12:45Z
dc.date.available2024-01-09T08:12:45Z
dc.date.issued2023en_US
dc.identifier.citationAka, C., Kıvrak, B., Tekşen, F.A., Akyıldız, H., Akgöl, O., Karaaslan, M., Akyol, M. (2023). Phase (1T/2H) dependent electromagnetic wave absorbing performance of flower-like MoS2 nanosheets. Materials Today Communications, 36, art. no. 106716. https://doi.org/10.1016/j.mtcomm.2023.106716en_US
dc.identifier.issn2352-4928
dc.identifier.urihttps://doi.org/10.1016/j.mtcomm.2023.106716
dc.identifier.urihttps://hdl.handle.net/20.500.12508/2943
dc.description.abstractA study was carried out to determine the phase-dependent electromagnetic wave (EMW) absorption performance of MoS2 particles via systematically diversified hydrothermal synthesis conditions such as time, temperature, precursor molarity, and oxalic acid concentration. The formation of mixed-phase structure was verified depending on the presence of the characteristic diffraction peaks belong to 1T (trigonal, P3?m1 space group) and 2H (hexagonal, P63/mmc space group) phases in the X-ray diffraction (XRD) patterns. Phase-pure 2H-MoS2 was obtained at 200 degrees C after 12 h of reaction and using 5 mmol oxalic acid. Microscopic examinations indicate that MoS2 particles formed by assembling several nanosheets to create a flower-like morphology. The size, shape, and the distance between the nanosheets were observed to change with increasing temperature, time, and acid concentration. The band gap was found to be modified depending on the phase distribution and decreased from 1.54 eV (2H) to a minimum of 0.64 eV (1T/2H) with the formation of the 1T (metallic) phase. Finally, the minimum reflection loss was measured as -67.73 dB (99.9999 % of absorption at 9.05 GHz) with an effective absorption bandwidth (EAB) of 3.52 GHz for the sample composed of 1T/2H mixed-phased structure.en_US
dc.language.isoengen_US
dc.publisherElsevieren_US
dc.relation.isversionof10.1016/j.mtcomm.2023.106716en_US
dc.rightsinfo:eu-repo/semantics/closedAccessen_US
dc.subjectElectromagnetic wave absorptionen_US
dc.subjectHydrothermal synthesisen_US
dc.subjectMixed phaseen_US
dc.subjectMolybdenum disulfideen_US
dc.subjectNanosheeten_US
dc.subject.classificationElectrical Engineering, Electronics & Computer Science - Wireless Technology - Microwave Absorption
dc.subject.otherCircular waveguides
dc.subject.otherElectromagnetic wave absorption
dc.subject.otherEnergy gap
dc.subject.otherLayered semiconductors
dc.subject.otherMolybdenum disulfide
dc.subject.otherNanosheets
dc.subject.otherOxalic acid
dc.subject.otherAbsorption performance
dc.subject.otherAcid concentrations
dc.subject.otherDiffraction peaks
dc.subject.otherMixed phase
dc.subject.otherMolarity
dc.subject.otherPhase dependent
dc.subject.otherSpace groups
dc.subject.otherSynthesis conditions
dc.subject.otherTime-temperature
dc.subject.otherWave absorbing performance
dc.subject.otherHydrothermal synthesis
dc.subject.otherFacile synthesis
dc.titlePhase (1T/2H) dependent electromagnetic wave absorbing performance of flower-like MoS2 nanosheetsen_US
dc.typearticleen_US
dc.relation.journalMaterials Today Communicationsen_US
dc.contributor.departmentMühendislik ve Doğa Bilimleri Fakültesi -- Elektrik-Elektronik Mühendisliği Bölümüen_US
dc.identifier.volume36en_US
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanıen_US
dc.contributor.isteauthorTekşen, Fikret Alpay
dc.contributor.isteauthorAkgöl, Oğuzhan
dc.contributor.isteauthorKaraaslan, Muharrem
dc.relation.indexWeb of Science - Scopusen_US
dc.relation.indexWeb of Science Core Collection - Science Citation Index Expanded


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