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Enhanced Activity for Oxygen Evolution Reaction of Nanoporous IrNi thin film Formed by Electrochemical Selective Etching Process
Shin-Ae Park, Kyubin Shim, Kyu-Su Kim, Young Hoon Moon, Yong-Tae Kim
J. Electrochem. Sci. Technol. 2019;10(4):402-407.   Published online October 24, 2019
DOI: https://doi.org/10.33961/jecst.2019.00199

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Enhanced Activity for Oxygen Evolution Reaction of Nanoporous IrNi thin film Formed by Electrochemical Selective Etching Process
Journal of Electrochemical Science and Technology. 2019;10(4):402-407   Crossref logo
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IrNi nanoparticle-decorated flower-shaped NiCo2O4 nanostructures: controllable synthesis and enhanced electrochemical activity for oxygen evolution reaction
Science China Materials. 2016;60(2):119-130   Crossref logo
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Electrocatalytic activity of electrodeposited CoOx thin film on low-carbon unalloyed steel substrate toward electrochemical oxygen evolution reaction (OER)
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Fluid-kinetics enhanced selective etching process of NiPt film by piranha chemistry in silicide formation for complementary metal oxide semiconductor fabrication
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Three-Dimensionally Interconnected Nanoporous IrRe Thin Films Prepared by Selective Etching of Re for Oxygen Evolution Reaction
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PtMo Sponge-like Nanoporous Structure Wrapped with Ultrathin N,S-Co-Doped Carbon Dots Exhibiting Enhanced Electrocatalytic Activity for Hydrogen Evolution Reaction and Oxygen Reduction Reaction
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The Catalysis of the Oxygen Evolution Reaction by Iron Impurities in Thin Film Nickel Oxide Electrodes
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Nanoporous PdTi Alloys as Non-Platinum Oxygen-Reduction Reaction Electrocatalysts with Enhanced Activity and Durability
ChemSusChem. 2012;6(1):78-84   Crossref logo
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