Please use this identifier to cite or link to this item: http://nopr.niscpr.res.in/handle/123456789/57794
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dc.contributor.authorChu, Yuanyuan-
dc.contributor.authorDeng, Bohan-
dc.contributor.authorWang, Kuixiao-
dc.contributor.authorXue, Yu-
dc.contributor.authorTan, Xiaoyao-
dc.date.accessioned2021-07-30T05:05:41Z-
dc.date.available2021-07-30T05:05:41Z-
dc.date.issued2021-07-
dc.identifier.issn0975-0975(Online); 0376-4710(Print)-
dc.identifier.urihttp://nopr.niscair.res.in/handle/123456789/57794-
dc.description932-937en_US
dc.description.abstractElectrocatalysts are composed of transition metal/metal oxide and N-doped carbon can overcome the sluggish kinetics of oxygen reduction reactio. Herein, the Co3O4/ketjen black (KB)@MOF-derived with uniformly dispersed and ultrafine Co3O4 nanoparticles (1-5 nm) are synthesized by a facile in-situ method and subsequent mild pyrolysis process. It exhibits enhanced activity with onset potential of 0.96 V (vs. RHE) and a half-wave potential of 0.86 V (vs. RHE) in 0.1 M KOH solution, the excellent durability with E1/2 a small negative shift of 10 mV after 5000 continuous cycles and good methanol-tolerance property. The ultrahigh catalytic performance of Co3O4/KB@MOF-derived can be ascribed to the small particle size range of 1-5 nm of Co3O4, as well as the strong interaction between the in-situ formed N-Co3O4 active sites and substrate under the mild calcination temperature. Above all, these indicate that the as-prepared Co3O4/KB@MOF-derived may be a good alternative to commercial Pt-based catalysts.en_US
dc.language.isoenen_US
dc.publisherNIScPR-CSIR, Indiaen_US
dc.sourceIJC-A Vol.60A(07) [July 2021]en_US
dc.subjectCo3O4/KB@MOF-deriveden_US
dc.subjectDurabilityen_US
dc.subjectMethanol-toleranceen_US
dc.subjectOxygen reduction reactionen_US
dc.subjectDirect methanol fuel cellen_US
dc.titleHighly dispersed and ultrafine Co3O4@N-doped carbon catalyst derived from metal-organic framework for efficient oxygen reduction reactionen_US
dc.typeArticleen_US
Appears in Collections:IJC-A Vol.60A(07) [July 2021]

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