Theoretical investigation of quantum capacitance in the functionalized MoS2-monolayer

dc.contributor.authorSruthi, T.
dc.contributor.authorDevaraj, N.
dc.contributor.authorTarafder, K.
dc.date.accessioned2026-02-05T09:27:05Z
dc.date.issued2021
dc.description.abstractIn this work, we investigated the electronic structure and the quantum capacitance of a set of functionalized MoS2 monolayers. The functionalizations have been done by using different ad-atom adsorption on MoS2 monolayer. Density functional theory calculations are performed to obtain an accurate electronic structure of ad-atom doped MoS2 monolayer with a varying degree of doping concentration. Subsequently, the quantum capacitance in each functionalized system was estimated. A marked quantum capacitance above 200 ?F cm-2 has been observed. Our calculations show that the quantum capacitance of MoS2 monolayer is significantly enhanced with substitutional doping of Mo with transition metal ad-atoms. The microscopic origin of such enhancement in quantum capacitance in this system has been analyzed. Our DFT-based calculation reveals that the generation of new electronic states at the proximity of the band-edge and the shift of Fermi level caused by the ad-atom adsorption results in a very high quantum capacitance in the system. © 2021 Institute of Physics Publishing. All rights reserved.
dc.identifier.citationElectronic Structure, 2021, 3, 2, pp. -
dc.identifier.urihttps://doi.org/10.1088/2516-1075/abe4c5
dc.identifier.urihttps://idr.nitk.ac.in/handle/123456789/23200
dc.publisherIOP Publishing Ltd
dc.subjectAtoms
dc.subjectCapacitance
dc.subjectDensity functional theory
dc.subjectElectronic structure
dc.subjectLayered semiconductors
dc.subjectMolybdenum compounds
dc.subjectMonolayers
dc.subjectQuantum theory
dc.subjectTransition metals
dc.subjectBand edge
dc.subjectDFT-based
dc.subjectDoping concentration
dc.subjectFunctionalizations
dc.subjectFunctionalized
dc.subjectQuantum capacitance
dc.subjectTheoretical investigations
dc.subjectSulfur compounds
dc.titleTheoretical investigation of quantum capacitance in the functionalized MoS2-monolayer

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