Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/24002
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dc.contributor.authorKavan, Ladislav-
dc.contributor.authorZivcova, Zuzana Vlckova-
dc.contributor.authorPetrak, Vaclav-
dc.contributor.authorFrank, Otakar-
dc.contributor.authorJanda, Pavel-
dc.contributor.authorTarabkova, Hana-
dc.contributor.authorNESLADEK, Milos-
dc.contributor.authorMORTET, Vincent-
dc.date.accessioned2017-07-18T10:17:33Z-
dc.date.available2017-07-18T10:17:33Z-
dc.date.issued2015-
dc.identifier.citationELECTROCHIMICA ACTA, 179, p. 626-636-
dc.identifier.issn0013-4686-
dc.identifier.urihttp://hdl.handle.net/1942/24002-
dc.description.abstractComparative studies of boron-doped diamonds electrodes (polycrystalline, single-crystalline, H-/O-terminated, and with different sp3/sp2 ratios) indicate morphological modifications of diamond which are initiated by corrosion at nanoscale. In-situ electrochemical AFM imaging evidences that the textural changes start at non-diamond carbonaceous impurity sites treated at high positive potentials (>2.2 V vs. Ag/AgCl). The primary perturbations subsequently develop into sub-micron-sized craters. Raman spectroscopy shows that the primary erosion site is graphite-like (sp2-carbon), which is preferentially removed by anodic oxidation. Other non-diamond impurity, viz. tetrahedral amorphous carbon (t-aC), is less sensitive to oxidative decomposition. The diamond-related Raman features, including the B-doping-assigned modes, are intact during reversible electrochemical charging/discharging, which is a salient difference from all usual sp2-carbons. The electrochemical oxidation partly transforms a hydrogen-terminated diamond surface to O-terminated one, but the electrocatalytic activity of plasmatically O-terminated diamond is not achieved for a model redox couple, Fe3+/2+. Electrochemical impedance spectra were fitted to six different equivalent circuits. The determination of acceptor concentrations is feasible even for highly-doped diamond electrodes.-
dc.description.sponsorshipThis work was supported by the Grant Agency of the Czech Republic (contract No. 13-31783S) and by the Academy of Sciences of the Czech Republic through the J. E. PurkynÄ› fellowship awarded to V.M.-
dc.language.isoen-
dc.rights(c) 2015 Elsevier Ltd. All rights reserved.-
dc.subject.otherboron doped diamond; electrochemical impedance spectroscopy; atomic force microscopy; Raman; spectroelectrochemistry-
dc.titleBoron-doped Diamond Electrodes: Electrochemical, Atomic Force Microscopy and Raman Study towards Corrosion-modifications at Nanoscale-
dc.typeJournal Contribution-
dc.identifier.epage636-
dc.identifier.spage626-
dc.identifier.volume179-
local.bibliographicCitation.jcatA1-
local.type.refereedRefereed-
local.type.specifiedArticle-
local.classdsPublValOverrule/author_version_not_expected-
local.classdsPublValOverrule/internal_author_not_expected-
local.classIncludeIn-ExcludeFrom-List/ExcludeFromFRIS-
dc.identifier.doi10.1016/j.electacta.2015.04.124-
dc.identifier.isi000362292200074-
item.fulltextWith Fulltext-
item.contributorKavan, Ladislav-
item.contributorZivcova, Zuzana Vlckova-
item.contributorPetrak, Vaclav-
item.contributorFrank, Otakar-
item.contributorJanda, Pavel-
item.contributorTarabkova, Hana-
item.contributorNESLADEK, Milos-
item.contributorMORTET, Vincent-
item.fullcitationKavan, Ladislav; Zivcova, Zuzana Vlckova; Petrak, Vaclav; Frank, Otakar; Janda, Pavel; Tarabkova, Hana; NESLADEK, Milos & MORTET, Vincent (2015) Boron-doped Diamond Electrodes: Electrochemical, Atomic Force Microscopy and Raman Study towards Corrosion-modifications at Nanoscale. In: ELECTROCHIMICA ACTA, 179, p. 626-636.-
item.validationecoom 2017-
item.accessRightsRestricted Access-
crisitem.journal.issn0013-4686-
crisitem.journal.eissn1873-3859-
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