Nickel-containing electrocatalysts are being developed for the electrochemical transformations of organic species and used in gas evolution reactions, such as the oxygen evolution reaction (OER). Nickel-based materials are sought after in part for their lower cost relative to precious metal catalysts (e.g., Pt, Ru, Ir). To develop more durable materials and to better understand the mechanisms involved in electrochemical transformations on nickel-based materials, it is essential to understand how these materials evolve and age as a result of electrocatalytic processes. In this study, we preserve and analyze the hydrated form of nickel electrocatalysts prepared by electrochemical aging under alkaline conditions relevant to the OER. A series o...
Nickel hydroxide is widely used in supercapacitors, alkaline batteries, for the electrocatalytic oxi...
The persistently increasing energy consumption and the low abundance of conventional fuels have rais...
NiFe-(oxy)hydroxide is one of the most active electrocatalysts for the oxygen evolution reaction (OE...
The oxygen evolution reaction (OER) is of importance to both electrochemical energy conversion and e...
The oxygen evolution reaction (OER) is of importance to both electrochemical energy conversion and e...
Abstract-The oxygen evolution reaction (OER) was investigated at 60‘C in 15wt% NaOH solution on nick...
The preparation and screening of nanoparticle (NP) electrocatalysts for improved electrocatalytic ox...
Electrocatalysts, electrochromic devices, and pseudo-capacitors based on transition metal (oxy)hydro...
Water electrolysis from renewable electricity may enable the widespread use of hydrogen as a high en...
Nickel-based catalysts in aqueous alkaline media are low-cost electrode materials for electrolytic h...
Because the reconstruction of catalysts is generally observed during oxidation reactions, understand...
The ageing and rejuvenation behaviour of nickel oxy-hydroxide anodes for alkaline water electrolysi...
International audienceMultiple electrochemical processes are involved at the catalyst/electrolyte in...
The time variation of current density at constant potentials for oxygen evolution on metals or alloy...
Electrochemical water splitting to generate hydrogen has been identified as a possible solution to t...
Nickel hydroxide is widely used in supercapacitors, alkaline batteries, for the electrocatalytic oxi...
The persistently increasing energy consumption and the low abundance of conventional fuels have rais...
NiFe-(oxy)hydroxide is one of the most active electrocatalysts for the oxygen evolution reaction (OE...
The oxygen evolution reaction (OER) is of importance to both electrochemical energy conversion and e...
The oxygen evolution reaction (OER) is of importance to both electrochemical energy conversion and e...
Abstract-The oxygen evolution reaction (OER) was investigated at 60‘C in 15wt% NaOH solution on nick...
The preparation and screening of nanoparticle (NP) electrocatalysts for improved electrocatalytic ox...
Electrocatalysts, electrochromic devices, and pseudo-capacitors based on transition metal (oxy)hydro...
Water electrolysis from renewable electricity may enable the widespread use of hydrogen as a high en...
Nickel-based catalysts in aqueous alkaline media are low-cost electrode materials for electrolytic h...
Because the reconstruction of catalysts is generally observed during oxidation reactions, understand...
The ageing and rejuvenation behaviour of nickel oxy-hydroxide anodes for alkaline water electrolysi...
International audienceMultiple electrochemical processes are involved at the catalyst/electrolyte in...
The time variation of current density at constant potentials for oxygen evolution on metals or alloy...
Electrochemical water splitting to generate hydrogen has been identified as a possible solution to t...
Nickel hydroxide is widely used in supercapacitors, alkaline batteries, for the electrocatalytic oxi...
The persistently increasing energy consumption and the low abundance of conventional fuels have rais...
NiFe-(oxy)hydroxide is one of the most active electrocatalysts for the oxygen evolution reaction (OE...