2021
DOI: 10.14716/ijtech.v12i4.4851
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Chemical Resistance and Catalytic Activity of Copper in the Process of Electrooxidation of Ethanol in Strong Alkaline Media

Abstract: The possibility of using copper (Cu) as a catalyst in nonflowing membraneless alkaline fuel cells was investigated. In the present study, the interface between two immiscible liquids served as a virtual membrane. We studied two immiscible liquid systems: Ethanol+K3PO4+H2O (No. 1 electrolyte) and Ethanol+KOH+H2O (No. 2 electrolyte). Cyclic voltammetry, pulse chronoamperometry, and gas-liquid chromatography were used to study the corrosion resistance and catalytic activity of ethanol oxidation on Cu. Analyses of… Show more

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Cited by 6 publications
(1 citation statement)
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“…Studies have been carried out to determine the catalytic activity of di-and tricatalysts structured with metal foam (Ag, Cu, Ni, Sn) and NiO, Fe 2 O 3 oxides on metal substrates made of copper [19], titanium [20] for the oxidation of ethyl alcohol in strongly alkaline solutions of KOH and K 2 HPO 4 , in the proposed fuel cell [18]. Platinum and ruthenium oxide [20], silver and copper foam and graphene [21], metal oxides NiO, Fe 2 O 3 [22], etc.…”
mentioning
confidence: 99%
“…Studies have been carried out to determine the catalytic activity of di-and tricatalysts structured with metal foam (Ag, Cu, Ni, Sn) and NiO, Fe 2 O 3 oxides on metal substrates made of copper [19], titanium [20] for the oxidation of ethyl alcohol in strongly alkaline solutions of KOH and K 2 HPO 4 , in the proposed fuel cell [18]. Platinum and ruthenium oxide [20], silver and copper foam and graphene [21], metal oxides NiO, Fe 2 O 3 [22], etc.…”
mentioning
confidence: 99%