With the goal to facilitate a new experimental procedure for the monitoring of anomalous hydrogen evolution from anodically-polarized magnesium-based materials, this paper presents the application of the three-step (off-on-off) anodization operation sequence for amperometric scanning electrochemical microscopy (SECM) recently proposed by our group to the characterization of 99.9% magnesium in aqueous saline solution. The SECM measurements done above prepolarized and nonpolarized magnesium provided new information on the hydrogen evolution reaction (HER) on this metal, whereas other experiments are presented that enable to monitor the effect of the oxy-hydroxide layer formed on the metal under anodic polarization. In addition, direct comparison of the data obtained for 99.9% magnesium with those previously obtained for AZ63 magnesium alloy contributed to separate the effect of noble impurities from the catalytic effect of the oxy-hydroxide layer formed on magnesium for the hydrogen-evolution reaction.

Investigation of anomalous hydrogen evolution from anodized magnesium using a polarization routine for scanning electrochemical microscopy

Fernandez-Perez B. M.;
2021

Abstract

With the goal to facilitate a new experimental procedure for the monitoring of anomalous hydrogen evolution from anodically-polarized magnesium-based materials, this paper presents the application of the three-step (off-on-off) anodization operation sequence for amperometric scanning electrochemical microscopy (SECM) recently proposed by our group to the characterization of 99.9% magnesium in aqueous saline solution. The SECM measurements done above prepolarized and nonpolarized magnesium provided new information on the hydrogen evolution reaction (HER) on this metal, whereas other experiments are presented that enable to monitor the effect of the oxy-hydroxide layer formed on the metal under anodic polarization. In addition, direct comparison of the data obtained for 99.9% magnesium with those previously obtained for AZ63 magnesium alloy contributed to separate the effect of noble impurities from the catalytic effect of the oxy-hydroxide layer formed on magnesium for the hydrogen-evolution reaction.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/3417252
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