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Single-step synthesis of core-shell diamond-graphite hybrid nano-needles as efficient supercapacitor electrode

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dc.contributor.author Banerjee, D.
dc.contributor.author Sankaran, K.J.
dc.contributor.author Deshmukh, S.
dc.contributor.author Yeh, C.J.
dc.contributor.author Gupta, M.
dc.contributor.author Lin, I.N.
dc.contributor.author Haenen, K.
dc.contributor.author Kanjilal, A.
dc.contributor.author Roy, S.S.
dc.date.accessioned 2023-07-28T05:00:52Z
dc.date.available 2023-07-28T05:00:52Z
dc.date.issued 2021
dc.identifier.citation Electrochimica Acta, 397, 2021: 139267
dc.identifier.issn 0013-4686
dc.identifier.uri http://ore.immt.res.in/handle/2018/2963
dc.description.abstract Single-step synthesis of core-shell diamond-graphite hybrid electrodes is demonstrated by a mere variation of CH4 concentration (CC) in the microwave growth plasma. The excellent electrochemical stability of diamond and high surface area/electrical conductivity of graphite make the hybrid electrode suitable for supercapacitor application. The supercapacitor study of the hybrid electrode is carried out using both aqueous and redox species contained electrolytes. A brilliant supercapacitor performance (specific capacitance 0.19 F cm(-2)) with high energy and power density and remarkable electrode retention (96% after 10,000 cycles) is obtained and discussed in the light of different electrochemical techniques such as cyclic voltammetry, galvanostatic charge-discharge, and electrochemical impedance spectroscopy. The supercapacitor performance is explained by analyzing the microstructural evolution of diamond films from a well-faceted geometry dominated with pure diamond phase to an entirely different needle-like structure having diamond-graphite mixed phase. The CC-dependent phase transition is confirmed by X-ray diffraction, Raman spectroscopy, X-ray photoelectron spectroscopy, and X-ray absorption spectroscopy study. Finally, the core-shell structure of the hybrid nano-needles is confirmed by transmission electron microscopy investigations. (C) 2021 Published by Elsevier Ltd.
dc.language en
dc.publisher Elsevier
dc.relation.isreferencedby SCI
dc.rights Copyright [2021]. All efforts have been made to respect the copyright to the best of our knowledge. Inadvertent omissions, if brought to our notice, stand for correction and withdrawal of document from this repository.
dc.subject Electrochemistry
dc.title Single-step synthesis of core-shell diamond-graphite hybrid nano-needles as efficient supercapacitor electrode
dc.type Journal Article
dc.affiliation.author Shiv Nadar Univ, Gautam Buddha Nagar 201314, Uttar Pradesh, India


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