Article ID Journal Published Year Pages File Type
1528444 Materials Science and Engineering: B 2016 6 Pages PDF
Abstract

•A binder-free Cu/Cu foam electrode is prepared by an electrochemical method.•The electrode owns a novel three-dimensional porous structure.•The electrode exhibits superior catalytic activity for hydrazine electrooxidation.

A three-dimensional porous copper film is directly deposited on Cu foam by an electrodeposition method using hydrogen bubbles as dynamic template (denoted as Cu/Cu foam). Its electrocatalytic activity toward hydrazine electrooxidation is tested by linear sweep voltammetry, chronoamperometry and electrochemical impedance spectroscopy. Compared with Cu foam, hydrazine electrooxidation on the Cu/Cu foam electrode shows that the onset oxidation potential displays a ~100 mV negative shift, the current density at −0.6 V raises about 14 times, the apparent activation energy and the charge transfer resistance reduce significantly. The increasing electrocatalytic performance for hydrazine electrooxidation is mainly caused by the highly porous structure of the Cu/Cu foam electrode which can provide a large surface area and make electrolyte access the electrocatalyst surfaces more easily. Hydrazine electrooxidation on the Cu/Cu foam electrode proceeds through a near 4-electron process.

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Physical Sciences and Engineering Materials Science Electronic, Optical and Magnetic Materials
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