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AuthorIpadeola, Adewale K.
AuthorEid, Kamel
AuthorLebechi, Augustus K.
AuthorAbdullah, Aboubakr M.
AuthorOzoemena, Kenneth I.
Available date2022-09-19T07:47:37Z
Publication Date2022-07-01
Publication NameElectrochemistry Communications
Identifierhttp://dx.doi.org/10.1016/j.elecom.2022.107330
CitationIpadeola, A. K., Eid, K., Lebechi, A. K., Abdullah, A. M., & Ozoemena, K. I. (2022). Porous Multi-metallic Pt-based Nanostructures as Efficient Electrocatalysts for Ethanol Oxidation: Strategy and Mechanism. Electrochemistry Communications, 107330.‏
ISSN13882481
URIhttps://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85134895964&origin=inward
URIhttp://hdl.handle.net/10576/34161
AbstractPorous multi-metallic Pt-based nanostructures (PM-Pt-Ns) electrocatalysts possess various unique structural and compositional merits that facilitate their utilization in ethanol oxidation reaction (EOR), which is one of the most important parameters in ethanol-based fuel cells. Improving the EOR activity of PM-Pt-Ns electrocatalysts with low Pt-content remains a daunting challenge, so various efforts devoted to overcoming these barriers lie in controlling nanoparticle shapes/compositions using a variety of methods. This mini-review evaluates the most interesting papers related to PM-Pt-Ns (i.e., binary and ternary) electrocatalysts for EOR with annotations in the last three years. Different preparation methods, morphologies and compositions of PM-Pt-Ns electrocatalysts on the EOR activity are discussed, as well as the challenges for scalable fabrication of PM-Pt-Ns electrocatalysts as anodes for practical ethanol-based fuel cells. Finally, the prospects for directing the development of novel PM-Pt-Ns for practical applications are emphasized.
Languageen
PublisherElsevier Inc.
SubjectBinary Pt-electrocatalysts
Ethanol fuel cells
Ethanol oxidation
Porous multi-metallic-Pt-nanostructures
Ternary Pt-electrocatalysts
TitlePorous multi-metallic Pt-based nanostructures as efficient electrocatalysts for ethanol oxidation: A mini-review
TypeArticle Review
Volume Number140


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