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dc.contributor.authorVolodin, Alexei A.
dc.contributor.authorDenys, Roman Volodymyrovich
dc.contributor.authorWan, ChuBin
dc.contributor.authorWijayanti, Ika Dewi
dc.contributor.authorSuwarno, Suwarno
dc.contributor.authorTarasov, Boris P.
dc.contributor.authorAntonov, Vladimir E.
dc.contributor.authorYartys, Volodymyr
dc.date.accessioned2019-09-26T11:14:55Z
dc.date.available2019-09-26T11:14:55Z
dc.date.created2019-05-09T10:04:42Z
dc.date.issued2019
dc.identifier.citationJournal of Alloys and Compounds. 2019, 793 564-575.nb_NO
dc.identifier.issn0925-8388
dc.identifier.urihttp://hdl.handle.net/11250/2618956
dc.description.abstractA C15 AB2 Laves-type Ti0.15Zr0.85La0.03Ni1.2Mn0.7V0.12Fe0.12 alloy was prepared by arc melting and annealing. Phase-structural composition, microstructure, hydrogen absorption-desorption properties, thermodynamic and electrochemical performances were characterized by X-ray diffraction, scanning electron microscopy, hydrogen absorption-desorption measurements and electrochemical characterization and were related to the use of the alloys as metal hydride battery anodes. The alloy contains a C15 FCC intermetallic compound as the main phase and a LaNi secondary phase as the minor constituent (∼1 wt%). During the electrochemical tests, the anode electrodes quickly, after just a few activation cycles, reached a maximum discharge capacity. This was related to the catalytic effect of the La-rich secondary phase which acted as a catalyst of hydrogen absorption-desorption. Annealing resulted in increase of the maximum discharge capacity from 345 mAh/g for the as cast alloy to 370 mAh/g. Furthermore, the annealed alloy showed a better high rate dischargeability and a higher cyclic stability. After 100 cycles with 100% DOD at discharge current density of 1C, the discharge capacity of the annealed alloy was very high, at a level of 90% of the initial capacity. The rates of hydrogen diffusion have been characterized by Potentiostatic Intermittent Titration Technique and Electrochemical Impedance Spectroscopy. With increasing an extent of transformation into the hydride, the H diffusion rate in the bulk of the alloy particles decreased. The maximum value of DH measured by PITT for the annealed alloy was observed for the nearly fully discharged electrode, (SOC 2%).nb_NO
dc.language.isoengnb_NO
dc.publisherElseviernb_NO
dc.rightsAttribution-NonCommercial-NoDerivatives 4.0 Internasjonal*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/deed.no*
dc.titleStudy of hydrogen storage and electrochemical properties of AB2-typeTi0.15Zr0.85La0.03Ni1.2Mn0.7V0.12Fe0.12alloynb_NO
dc.typeJournal articlenb_NO
dc.typePeer reviewednb_NO
dc.description.versionacceptedVersionnb_NO
dc.source.pagenumber564-575nb_NO
dc.source.volume793nb_NO
dc.source.journalJournal of Alloys and Compoundsnb_NO
dc.identifier.doi10.1016/j.jallcom.2019.03.134
dc.identifier.cristin1696547
dc.relation.projectNorges forskningsråd: 234246nb_NO
dc.relation.projectNorges forskningsråd: 257653nb_NO
dc.description.localcode© 2019. This is the authors’ accepted and refereed manuscript to the article. Locked until 9.3.2021 due to copyright restrictions. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.org/licenses/by-nc-nd/4.0/nb_NO
cristin.unitcode194,66,35,0
cristin.unitnameInstitutt for materialteknologi
cristin.ispublishedtrue
cristin.fulltextpostprint
cristin.qualitycode1


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Attribution-NonCommercial-NoDerivatives 4.0 Internasjonal
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