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dc.creatorCen J., Jiang E., Zhu Y., Chen Z., Tsiakaras P., Shen P.K.en
dc.date.accessioned2023-01-31T07:42:01Z
dc.date.available2023-01-31T07:42:01Z
dc.date.issued2021
dc.identifier10.1016/j.renene.2021.06.005
dc.identifier.issn09601481
dc.identifier.urihttp://hdl.handle.net/11615/72339
dc.description.abstractHerein, two novel electrocatalysts are simultaneously grown on Ni foam (NF) through a one-step hydrothermal method. The as-prepared Ru–MoO3-x NF exhibits good performance for HER with low overpotentials of 12 mV at 10 mA cm−2 and 49 mV at 100 mA cm−2, a low Tafel slope of 32.96 mV dec−1, as well as an excellent durability at least lasting 17 h in alkaline media. The Fe3O4–NiFe LDH NF (layered double hydroxide nickel foam) ultrathin nanosheets electrode shows a low OER overpotential of 216 mV at 10 mA cm−2 and a small Tafel slope of 42.42 mV dec−1. Moreover, a two-electrode water splitting device is fabricated with Ru–MoO3-x NF as cathode and Fe3O4–NiFe LDH NF as anode, it only requires 1.46 V at 10 mA cm−2 and exhibits a long term durability without obvious loss of activity after continuously operating for 180 h. The superior catalytic behavior should be originated from the open heterostructure and oxygen vacancies with high intrinsic activity, abundant exposed active sites, and fast charge transfer. This work provides a new strategy to design heterostructure and transition metal oxides catalysts with improved catalytic activity and durability by a facile route for overall water splitting or other applications. © 2021 Elsevier Ltden
dc.language.isoenen
dc.sourceRenewable Energyen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85109414559&doi=10.1016%2fj.renene.2021.06.005&partnerID=40&md5=030ff7efcedf0228587c8f6731840afc
dc.subjectCatalyst activityen
dc.subjectCharge transferen
dc.subjectDurabilityen
dc.subjectElectrocatalystsen
dc.subjectElectrodesen
dc.subjectMolybdenum oxideen
dc.subjectNickelen
dc.subjectNickel compoundsen
dc.subjectRutheniumen
dc.subjectRuthenium compoundsen
dc.subjectTransition metal oxidesen
dc.subjectEvolution reactionsen
dc.subjectFe3O4–nife LDHen
dc.subjectHydrogen evolution reactionsen
dc.subjectMoO$-3$en
dc.subjectMoO3-xen
dc.subjectNi foamen
dc.subjectOverall water splittingen
dc.subjectOxygen evolutionen
dc.subjectRuen
dc.subjectWater splittingen
dc.subjectMagnetiteen
dc.subjectalkaline wateren
dc.subjectcatalysisen
dc.subjectcatalysten
dc.subjectelectrodeen
dc.subjecthydroxideen
dc.subjectElsevier Ltden
dc.titleEnhanced electrocatalytic overall water splitting over novel one-pot synthesized Ru–MoO3-x and Fe3O4–NiFe layered double hydroxide on Ni foamen
dc.typejournalArticleen


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