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- W3168189391 abstract "In this work, we prepared ruthenium-based oxide (Ru0.7M0.3O2 (M = Ir or Ti)) anodes by using the 2-hydroxyethylammonium acetate ionic liquid (IL) and the conventional polymeric precursor method. The use of IL as the solvent for the Ti/Ru0.7Ti0.3O2 anode resulted in the outstanding charge transfer resistance reduction of 30-fold and a decrease of 1.59-fold in the voltammetric charge when compared with the conventionally-made Ti/Ru0.7Ti0.3O2 anode. Whereas for the Ti/Ru0.7Ir0.3O2, the resistivity of the anode increased (2.64-fold), and the voltammetric charge decrease is low (1.25-fold) for the IL-made anode. However, the increased stability of the Ti/Ru0.7Ir0.3O2 anode (2.2-fold) indicates a positive effect of the IL on the adhesion of the coating. Notably, the prolonged accelerated service life (~300 h) displayed for the Ti/Ru0.7Ir0.3O2 anode made using the IL method is the highest found in the available literature for Ti/Ru0.7Ir0.3O2 anodes. Moreover, the Ti/Ru0.7Ir0.3O2 stands out with the better electrocatalytic performance toward the electrochemical oxidation of a model organic pollutant (Reactive Black 5 dye)." @default.
- W3168189391 created "2021-06-22" @default.
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- W3168189391 date "2021-08-01" @default.
- W3168189391 modified "2023-10-15" @default.
- W3168189391 title "Ti/Ru0.7M0.3O2 (M = Ir or Ti) anodes made by Pechini and ionic liquid methods: Uneven catalytic activity and stability" @default.
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- W3168189391 doi "https://doi.org/10.1016/j.jelechem.2021.115461" @default.
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