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The Ways for Bi on Pt to Enhance Formic Acid Oxidation
Hyein Lee, Young Jun Kim, Youngku Sohn, Choong Kyun Rhee
J. Electrochem. Sci. Technol. 2023;14(1):21-30.   Published online October 12, 2022

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The Ways for Bi on Pt to Enhance Formic Acid Oxidation
Journal of Electrochemical Science and Technology. 2023;14(1):21-30   Crossref logo
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Modification of Pt nanoelectrodes dispersed on carbon support using irreversible adsorption of Bi to enhance formic acid oxidation
Electrochimica Acta. 2008;53(26):7744-7750   Crossref logo
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Formic acid oxidation on Bi-modified Pt surfaces: Pt deposits on Au versus bulk Pt
Electrochimica Acta. 2016;216:16-23   Crossref logo
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Spontaneously Bi decorated carbon supported Pt nanoparticles for formic acid electro-oxidation
Electrochimica Acta. 2013;93:152-157   Crossref logo
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Bulk Bi and Bi Decorated Pt Thin Film Electrodes: From Formic Acid Oxidation to CO2 Reduction
ECS Meeting Abstracts. 2015;MA2015-01(32):1803-1803   Crossref logo
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Formic acid oxidation on Bi Pt(1 1 1) electrode in perchloric acid media. A kinetic study
Journal of Electroanalytical Chemistry. 2003;554-555:25-34   Crossref logo
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Pt Deposits on Bi/Pt NP Catalyst for Formic Acid Oxidation: Catalytic Enhancement and Longer Lifetime
Langmuir. 2020;36(19):5359-5368   Crossref logo

Pt Deposits on Bi-Modified Pt Electrodes of Nanoparticle and Disk: A Contrasting Behavior of Formic Acid Oxidation
Journal of Electrochemical Science and Technology. 2021;12(3):323-329   Crossref logo
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Ensemble size estimation in formic acid oxidation on Bi-modified Pt(111)
Electrochemistry Communications. 2010;12(12):1731-1733   Crossref logo
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Boosting the performance of Pt electro-catalysts toward formic acid electro-oxidation by depositing sub-monolayer Au clusters
Electrochimica Acta. 2011;56(27):10039-10043   Crossref logo
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