The enhanced catalytic activity of hydrogen evolution reaction on anodically polarized Mg surfaces, commonly referred to as the Negative Difference Effect, has been the topic of intense investigation in recent years. However, the cause of anodic H2 remains unclear. To determine the primary source of H2 evolution on dissolving Mg polarized at anodic potentials, an in-situ scanning vibrating electrode technique (SVET) analysis during galvanostatic polarization, coupled with gravimetric H2 volume collection and potentiodynamic polarization experiments, were carried out on ultra-high purity Mg (99.9999% Mg). The combination of these methods provided solid evidence that the evolution of hydrogen on dissolving ultra-pure Mg is primarily associate...
The kinetics of the hydrogen evolution reaction (HER) have been reported to increase upon pure magne...
Iron (Fe) is an unintentional impurity present in pure magnesium (Mg) and Mg alloys, albeit nominall...
AbstractThe Mg corrosion mechanism was explored using galvanostatic polarisation curves, hydrogen ev...
Hydrogen evolution (HE) on anodically polarized Mg, commonly referred to as Negative Difference Effe...
High chemical activity and unique electrochemical behaviour are responsible for the complicated corr...
Hydrogen evolution (HE) on anodically polarized Mg, commonly referred to as negative difference effe...
Scanning electrochemical microscopy (SECM) in the sample generation-tip collection mode was employ...
The evolution of hydrogen gas from corroding magnesium arises not exclusively from the cathodic hal...
AbstractThe behaviour of magnesium electrodes has been investigated in 3.5% NaCl during free corrosi...
Despite the growing interest in Mg and its alloys, their use has been largely limited due to their h...
With the goal to facilitate a new experimental procedure for the monitoring of anomalous hydrogen ...
This article provides a contribution towards the mechanistic understanding of surface phenomena obse...
Several mechanisms have been proposed to interpret the widely reported phenomenon of Mg corrosion th...
Hydrogen evolution rates upon magnesium were explored in 0.1 M sodium bicarbonate (NaHCO3) solution,...
Iron (Fe) is an unintentional impurity present in pure magnesium (Mg) and Mg alloys, albeit nominall...
The kinetics of the hydrogen evolution reaction (HER) have been reported to increase upon pure magne...
Iron (Fe) is an unintentional impurity present in pure magnesium (Mg) and Mg alloys, albeit nominall...
AbstractThe Mg corrosion mechanism was explored using galvanostatic polarisation curves, hydrogen ev...
Hydrogen evolution (HE) on anodically polarized Mg, commonly referred to as Negative Difference Effe...
High chemical activity and unique electrochemical behaviour are responsible for the complicated corr...
Hydrogen evolution (HE) on anodically polarized Mg, commonly referred to as negative difference effe...
Scanning electrochemical microscopy (SECM) in the sample generation-tip collection mode was employ...
The evolution of hydrogen gas from corroding magnesium arises not exclusively from the cathodic hal...
AbstractThe behaviour of magnesium electrodes has been investigated in 3.5% NaCl during free corrosi...
Despite the growing interest in Mg and its alloys, their use has been largely limited due to their h...
With the goal to facilitate a new experimental procedure for the monitoring of anomalous hydrogen ...
This article provides a contribution towards the mechanistic understanding of surface phenomena obse...
Several mechanisms have been proposed to interpret the widely reported phenomenon of Mg corrosion th...
Hydrogen evolution rates upon magnesium were explored in 0.1 M sodium bicarbonate (NaHCO3) solution,...
Iron (Fe) is an unintentional impurity present in pure magnesium (Mg) and Mg alloys, albeit nominall...
The kinetics of the hydrogen evolution reaction (HER) have been reported to increase upon pure magne...
Iron (Fe) is an unintentional impurity present in pure magnesium (Mg) and Mg alloys, albeit nominall...
AbstractThe Mg corrosion mechanism was explored using galvanostatic polarisation curves, hydrogen ev...