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Au cluster-derived electrocatalysts for CO2 reduction

dc.contributor.authorSharma, SKen_AU
dc.contributor.authorAhangari, HTen_AU
dc.contributor.authorJohannessen, Ben_AU
dc.contributor.authorGolovko, VBen_AU
dc.contributor.authorMarshall, ATen_AU
dc.date.accessioned2025-09-11T01:50:04Zen_AU
dc.date.available2025-09-11T01:50:04Zen_AU
dc.date.issued2023-04-21en_AU
dc.date.statistics2025-06-04en_AU
dc.description.abstractMetal clusters often exhibit superior chemical, electronic, and geometrical properties and can show exciting catalytic performance. The catalytic behaviour of the clusters is strongly affected by their size and composition, offering unique opportunities to fine-tune such materials for a specific application. In this study, atomically precise [Au6(dppp)4](NO3)2, [Au9(PPh3)8](NO3)3, [Au13(dppe)5Cl2]Cl3 and Au101(PPPh3)21Cl5 clusters were synthesised, characterised and their activity for electrocatalytic CO2 reduction is compared. These Au clusters were deposited onto carbon paper to serve as the cathode for the electrochemical reduction of CO2. The experimental studies suggest that the clusters remain intact upon deposition on the carbon paper but undergo agglomeration during CO2 electrolysis. The cluster-based catalysts demonstrated high selectivity (75%—90%) for CO production over hydrogen evolution reaction. Upon calcination, the activity of the cluster-based electrodes decreases, which can be attributed to the agglomeration of small clusters into larger bulk-like nanoparticles, as suggested by XPS, XAS and SEM. © 2025 Springer Nature.en_AU
dc.description.sponsorshipSKS acknowledges the funding support of the UC Connect PhD scholarship.en_AU
dc.identifier.citationSharma, S. K., Ahangari, H. T., Johannessen, B., Golovko, V. B., & Marshall, A. T. (2023). Au cluster-derived electrocatalysts for CO2 reduction. Electrocatalysis, 14(4), 611-623. doi:10.1007/s12678-023-00821-2en_AU
dc.identifier.issn1868-2529en_AU
dc.identifier.issn1868-5994en_AU
dc.identifier.issue4en_AU
dc.identifier.journaltitleElectrocatalysisen_AU
dc.identifier.pagination611-623en_AU
dc.identifier.urihttps://doi.org/10.1007/s12678-023-00821-2en_AU
dc.identifier.urihttps://apo.ansto.gov.au/handle/10238/16449en_AU
dc.identifier.volume14en_AU
dc.languageEnglishen_AU
dc.language.isoenen_AU
dc.publisherSpringer Natureen_AU
dc.subjectGolden_AU
dc.subjectElectrocatalystsen_AU
dc.subjectReductionen_AU
dc.subjectCarbon dioxideen_AU
dc.subjectNobeliumen_AU
dc.subjectElectrolysisen_AU
dc.subjectCalcinationen_AU
dc.subjectChlorineen_AU
dc.subjectCatalystsen_AU
dc.subjectElectrodesen_AU
dc.subjectLigandsen_AU
dc.subjectDensityen_AU
dc.subjectAgglomerationen_AU
dc.subjectNanoparticlesen_AU
dc.titleAu cluster-derived electrocatalysts for CO2 reductionen_AU
dc.typeJournal Articleen_AU

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