2020
DOI: 10.1016/j.apsusc.2019.145161
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Plasmon enhanced bifunctional electro-photo catalytic properties of Pt-Au/graphene composites for methanol oxidation and oxygen reduction reaction

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Cited by 33 publications
(8 citation statements)
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“…However, Pt catalysts reveal other serious practical limitations, such as poor stability and low methanol tolerance for ORR, which hinder the commercial application of fuel cells. Consequently, the introduction of other metals to the synthesis of bimetallic Pt-based catalysts, such as PtNi, PtCo, PtFe, and PtPd, could endow a decrease of Pt utilization. In addition, the introduction of other metal atoms could modify the charge distribution of Pt to enhance their electrocatalytic performance by optimizing the binding energy (BE) of absorbed O intermediates . Among these Pt-based catalysts, PtPd bimetallic alloys show highly efficient electrocatalytic activity and remarkable stability for ORR catalysts.…”
mentioning
confidence: 99%
“…However, Pt catalysts reveal other serious practical limitations, such as poor stability and low methanol tolerance for ORR, which hinder the commercial application of fuel cells. Consequently, the introduction of other metals to the synthesis of bimetallic Pt-based catalysts, such as PtNi, PtCo, PtFe, and PtPd, could endow a decrease of Pt utilization. In addition, the introduction of other metal atoms could modify the charge distribution of Pt to enhance their electrocatalytic performance by optimizing the binding energy (BE) of absorbed O intermediates . Among these Pt-based catalysts, PtPd bimetallic alloys show highly efficient electrocatalytic activity and remarkable stability for ORR catalysts.…”
mentioning
confidence: 99%
“…Copyright 2021 Elsevier. (c) The photocatalytic activity of the synthesized Pt–Au/GNs for MOR and ORR reactions, reproduced with permission from ref . Copyright 2020 Elsevier.…”
Section: Plasmon-enhanced Photocatalysis For Environmental Remediationmentioning
confidence: 99%
“…It can be understood that there is a linear relationship between ECSA and photo-enhanced methanol oxidation activity. 46,84 The lower photo-electrooxidation (MOR) activity of PZ1B5 is due to the large Pt size (ca. 4.35 AE 0.7 nm), nonuniform particle distribution, and high bandgap energy.…”
Section: Energy Advances Papermentioning
confidence: 99%