2016
DOI: 10.1016/j.ijhydene.2015.12.166
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Development of graphene supported platinum nanoparticles for polymer electrolyte membrane fuel cells: Effect of support type and impregnation–reduction methods

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Cited by 72 publications
(46 citation statements)
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“…The principal peaks are attributed to Pt 0 at 71.6 eV (4f7/2) and 74.9 eV (4f5/2), while the peaks at 72.6 and 75.5 eV correspond to Pt in its +2 states, respectively. The broad peaks at 77.7 eV and 80.2 eV are attributed to Pt +4 species [48]. A similar result was observed in the case of the Pt 4f spectrum of Pt/CB as seen in Fig.…”
Section: Fig 2 N 1s (A-c) and Pt 4f (D-f)supporting
confidence: 84%
“…The principal peaks are attributed to Pt 0 at 71.6 eV (4f7/2) and 74.9 eV (4f5/2), while the peaks at 72.6 and 75.5 eV correspond to Pt in its +2 states, respectively. The broad peaks at 77.7 eV and 80.2 eV are attributed to Pt +4 species [48]. A similar result was observed in the case of the Pt 4f spectrum of Pt/CB as seen in Fig.…”
Section: Fig 2 N 1s (A-c) and Pt 4f (D-f)supporting
confidence: 84%
“…In this study, GO was synthesized by an improved Hummers method [38,39]. Carbon components (0.5 mg/mL) and H 2 PtCl 6 (0.5 mg/mL) were ultrasonicated with DI water for 30 min.…”
Section: Synthesis Of Pt/rgo and Pt/rgo/cb Hybrid Electrocatalystsmentioning
confidence: 99%
“…However, in our study, Pt/partially reduced graphene oxide (rGO)/CB electrocatalysts were synthesized by mechanical homogenizing of carbon components (rGO and CB). The chemical reduction was employed in the presence of a Pt precursor to form supported Pt nanoparticles on the hybrid support [31,39]. By this approach, CB was used as an intercalating agent to have higher Pt utilization and better transport of reactants and by-product.…”
Section: Introductionmentioning
confidence: 99%
“…This could be attributed to a poor utilization of the catalyst surface. When graphene-like materials are used as catalyst supports, the method of catalyst synthesis and the type of graphene precursor significantly influences the EASA of the resulted catalysts [32,33,34,35]. For instance, the catalyst utilization can change from 28% to 93% depending on the synthesis procedure for graphene-supported catalysts [32].…”
Section: Resultsmentioning
confidence: 99%