Electrolytic Synthesis of Ni-W-MWCNT Composite Coating for Alkaline Hydrogen Evolution Reaction

dc.contributor.authorElias, L.
dc.contributor.authorHegde, A.C.
dc.date.accessioned2026-02-05T09:31:32Z
dc.date.issued2018
dc.description.abstractNickel–tungsten multi-walled carbon nanotube (Ni-W-MWCNT) composite films were fabricated by an electrodeposition technique, and their electrocatalytic activity toward hydrogen evolution reaction (HER) was studied. Ni-W-MWCNT composite films with a homogeneous dispersion of MWCNTs were deposited from an optimal Ni-W plating bath containing functionalized MWCNTs, under galvanostatic condition. The presence of functionalized MWCNT was found to enhance the induced codeposition of the reluctant metal W and resulted in a W-rich composite coating with improved properties. The electrocatalytic behaviors of Ni-W-MWCNT composite coating toward HER were studied by cyclic voltammetry (CV) and chronopotentiometry techniques in 1.0 M KOH medium. Further, Tafel polarization and electrochemical impedance spectroscopy (EIS) studies were carried out to establish the kinetics of HER on the alloy and composite electrodes. The experimental results revealed that the addition of MWCNTs (having a diameter of around 10-15 nm) into the alloy plating bath has a significant effect on the electrocatalytic behavior of Ni-W alloy deposit. The Ni-W-MWCNT composite coating was found to show better HER activity than the conventional Ni-W alloy coating. The enhanced electrocatalytic activity of Ni-W-MWCNT composite coating is attributed to the MWCNT intersticed in the deposit matrix, evidenced by surface morphology, composition and phase structure of the coating through SEM, EDS and XRD analyses, respectively. © 2018, ASM International.
dc.identifier.citationJournal of Materials Engineering and Performance, 2018, 27, 3, pp. 1033-1039
dc.identifier.issn10599495
dc.identifier.urihttps://doi.org/10.1007/s11665-018-3134-z
dc.identifier.urihttps://idr.nitk.ac.in/handle/123456789/25240
dc.publisherSpringer New York LLC barbara.b.bertram@gsk.com
dc.subjectCarbon
dc.subjectCarbon films
dc.subjectCarbon nanotubes
dc.subjectComposite coatings
dc.subjectComposite films
dc.subjectCyclic voltammetry
dc.subjectDeposits
dc.subjectElectrocatalysis
dc.subjectElectrochemical impedance spectroscopy
dc.subjectElectrodeposition
dc.subjectElectrodes
dc.subjectMetal cladding
dc.subjectMultiwalled carbon nanotubes (MWCN)
dc.subjectNanocomposite films
dc.subjectNickel
dc.subjectPhase structure
dc.subjectPotash
dc.subjectPotassium compounds
dc.subjectTungsten
dc.subjectYarn
dc.subjectElectrocatalytic activity
dc.subjectElectrocatalytic behavior
dc.subjectElectrodeposition technique
dc.subjectElectrolytic synthesis
dc.subjectGalvanostatic conditions
dc.subjectHomogeneous dispersions
dc.subjectHydrogen evolution reactions
dc.subjectInduced co depositions
dc.subjectNickel alloys
dc.titleElectrolytic Synthesis of Ni-W-MWCNT Composite Coating for Alkaline Hydrogen Evolution Reaction

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