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Sonoelectrochemical deposition of functional composite layers

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dc.contributor.author Schneider, O en
dc.contributor.author Martens, S en
dc.contributor.author Argirusis, Chr en
dc.date.accessioned 2014-03-01T02:52:06Z
dc.date.available 2014-03-01T02:52:06Z
dc.date.issued 2009 en
dc.identifier.issn 19385862 en
dc.identifier.uri https://dspace.lib.ntua.gr/xmlui/handle/123456789/35851
dc.subject.other Deagglomeration en
dc.subject.other Electrochemical deposition en
dc.subject.other Electrochemical quartz crystal microbalance en
dc.subject.other Functional composites en
dc.subject.other In-situ en
dc.subject.other Oxide particles en
dc.subject.other Pulsed ultrasounds en
dc.subject.other Sulfamates en
dc.subject.other Ultrasonic horn en
dc.subject.other Ultrasonic irradiation en
dc.subject.other Acoustic waves en
dc.subject.other Cerium compounds en
dc.subject.other Electrodeposition en
dc.subject.other Electron probe microanalysis en
dc.subject.other Energy dispersive spectroscopy en
dc.subject.other Nanotechnology en
dc.subject.other Oxide minerals en
dc.subject.other Probes en
dc.subject.other Quartz en
dc.subject.other Quartz crystal microbalances en
dc.subject.other Reduction en
dc.subject.other Silver en
dc.subject.other Ultrasonics en
dc.subject.other Ultrasonic applications en
dc.title Sonoelectrochemical deposition of functional composite layers en
heal.type conferenceItem en
heal.identifier.primary 10.1149/1.3115529 en
heal.identifier.secondary http://dx.doi.org/10.1149/1.3115529 en
heal.publicationDate 2009 en
heal.abstract Ultrasound was applied for the electrodeposition of metal/ceramic and metal/metal composites. Ni/ceria composites were deposited from Watts and sulfamate based electrolytes containing dispersed ceria using ultrasonic irradiation for the deagglomeration of oxide particles. The electrochemical deposition of silver at the tip of an ultrasonic horn probe using pulsed ultrasound was explored for its potential to electrodeposit Ni/Ag composites. First results are presented. Sonoelectrochemical processes were in part monitored in-situ by the electrochemical quartz crystal microbalance technique. Compositions of the electrodeposits were analyzed by energy dispersive spectroscopy and in part by electron probe microanalysis. ©The Electrochemical Society. en
heal.journalName ECS Transactions en
dc.identifier.doi 10.1149/1.3115529 en
dc.identifier.volume 16 en
dc.identifier.issue 25 en
dc.identifier.spage 107 en
dc.identifier.epage 118 en


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