2022
DOI: 10.1016/j.jcis.2021.09.171
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Ordered mesoporous Pt-Ru-Ir nanostructures as superior bifunctional electrocatalyst for oxygen reduction/oxygen evolution reactions

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Cited by 30 publications
(11 citation statements)
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“…2), while the CV curves revealed the existence of the polycrystalline Pt nanostructure in the case of the commercial catalyst. 54 As known, Pt-based catalysts with (111) facets exhibit the highest ORR catalytic activity, indicating that the as-made NiPt NUCs/C catalyst exhibited greater ORR performance than the Pt NPs/C (E-TEK) catalyst. 12,26 Additionally, the potential of Pt-OH formation and Pt-OH reduction on the as-made NiPt NUCs/C catalyst was shifted to a positive potential versus the carbon-supported Pt (NPs) catalyst, implying the formation of a Pt-rich shell on the NiPt alloys, similar to what was reported by Yoo et al 21 This induced a compressive strain on the Pt surface, reducing the binding energy of the oxygenated species on the as-made NiPt NUCs/C catalyst, thereby enhancing the ORR performance.…”
Section: Papermentioning
confidence: 77%
“…2), while the CV curves revealed the existence of the polycrystalline Pt nanostructure in the case of the commercial catalyst. 54 As known, Pt-based catalysts with (111) facets exhibit the highest ORR catalytic activity, indicating that the as-made NiPt NUCs/C catalyst exhibited greater ORR performance than the Pt NPs/C (E-TEK) catalyst. 12,26 Additionally, the potential of Pt-OH formation and Pt-OH reduction on the as-made NiPt NUCs/C catalyst was shifted to a positive potential versus the carbon-supported Pt (NPs) catalyst, implying the formation of a Pt-rich shell on the NiPt alloys, similar to what was reported by Yoo et al 21 This induced a compressive strain on the Pt surface, reducing the binding energy of the oxygenated species on the as-made NiPt NUCs/C catalyst, thereby enhancing the ORR performance.…”
Section: Papermentioning
confidence: 77%
“…Ravichandran et al incorporated the three metals, Pt, Ru, and Ir, into ordered mesoporous Pt 70 Ru 25 Ir 5 nanostructures (OMNs) as a bifunctional catalyst for ORR/OER in acidic environment . The OMNs exhibited a mass activity that was 5-fold higher than the benchmark Pt/C for ORR and an overpotential of 470 mV at 10 mA/cm 2 , which corresponded to an even higher OER activity with that of IrO 2 .…”
Section: Transition Metals In Oxygen Evolution Reaction/oxygen Reduct...mentioning
confidence: 99%
“…When increasing the rotation speed from 400 rpm to 1600 rpm, the diffusion current densities increased, while the onset potential was unchanged. To estimate the electron transfer number per O 2 molecule during the ORR by the Koutecky-Levich equation, as follows [59]:…”
Section: Xps Analysismentioning
confidence: 99%