Multiple electrochemical processes are involved at the catalyst/electrolyte interface during the oxygen evolution reaction (OER). With the purpose of elucidating the complexity of surface dynamics upon OER, we systematically studied two Ni-based crystalline oxides (LaNiO3−δ and La2Li0.5Ni0.5O4) and compared them with the state-of-the-art Ni–Fe (oxy)hydroxide amorphous catalyst. Electrochemical measurements such as rotating ring disk electrode (RRDE) and electrochemical quartz microbalance microscopy (EQCM) coupled with a series of physical characterizations including transmission electron microscopy (TEM) and X-ray absorption spectroscopy (XAS) were conducted to unravel the exact pH effect on both the OER activity and the catalyst stabilit...
Electrochemical water splitting to generate hydrogen has been identified as a possible solution to t...
Electrochemical water splitting to generate hydrogen has been identified as a possible solution to t...
As the energy needs of society continue to grow, and pressure to produce fewer emissions continues t...
International audienceMultiple electrochemical processes are involved at the catalyst/electrolyte in...
International audienceMultiple electrochemical processes are involved at the catalyst/electrolyte in...
International audienceMultiple electrochemical processes are involved at the catalyst/electrolyte in...
International audienceMultiple electrochemical processes are involved at the catalyst/electrolyte in...
Ni–Fe oxyhydroxides are the most active known electrocatalysts for the oxygen evolution reaction (OE...
Drevon D, Gorlin M, Chernev P, Xi L, Dau H, Aziz-Lange K. Uncovering The Role of Oxygen in Ni-Fe(OxH...
The development of efficient electrocatalysts to lower the overpotential of oxygen evolution reactio...
Layered double hydroxide (LDH) and amorphous nickel–iron (oxy)hydroxides (Ni<sub>1–<i>x</i></sub>Fe...
Ni-based oxygen evolution catalysts (OECs) are cost-effective and very active materials that can be ...
The electrocatalytic oxygen evolution reaction (OER) presents the key transformation in electrochemi...
In-situ X-ray absorption spectroscopy (XAS) at the oxygen K-edge was used to investigate the role of...
The oxygen evolution reaction (OER) is one of the key kinetically limiting half reactions in electro...
Electrochemical water splitting to generate hydrogen has been identified as a possible solution to t...
Electrochemical water splitting to generate hydrogen has been identified as a possible solution to t...
As the energy needs of society continue to grow, and pressure to produce fewer emissions continues t...
International audienceMultiple electrochemical processes are involved at the catalyst/electrolyte in...
International audienceMultiple electrochemical processes are involved at the catalyst/electrolyte in...
International audienceMultiple electrochemical processes are involved at the catalyst/electrolyte in...
International audienceMultiple electrochemical processes are involved at the catalyst/electrolyte in...
Ni–Fe oxyhydroxides are the most active known electrocatalysts for the oxygen evolution reaction (OE...
Drevon D, Gorlin M, Chernev P, Xi L, Dau H, Aziz-Lange K. Uncovering The Role of Oxygen in Ni-Fe(OxH...
The development of efficient electrocatalysts to lower the overpotential of oxygen evolution reactio...
Layered double hydroxide (LDH) and amorphous nickel–iron (oxy)hydroxides (Ni<sub>1–<i>x</i></sub>Fe...
Ni-based oxygen evolution catalysts (OECs) are cost-effective and very active materials that can be ...
The electrocatalytic oxygen evolution reaction (OER) presents the key transformation in electrochemi...
In-situ X-ray absorption spectroscopy (XAS) at the oxygen K-edge was used to investigate the role of...
The oxygen evolution reaction (OER) is one of the key kinetically limiting half reactions in electro...
Electrochemical water splitting to generate hydrogen has been identified as a possible solution to t...
Electrochemical water splitting to generate hydrogen has been identified as a possible solution to t...
As the energy needs of society continue to grow, and pressure to produce fewer emissions continues t...