Nickel iron oxyhydroxide is the benchmark catalyst for the oxygen evolution reaction (OER) in alkaline medium. Whereas the presence of Fe ions is essential to the high activity, the functions of Fe are currently under debate. Using oxygen isotope labeling and operando Raman spectroscopic experiments, we obtain turnover frequencies (TOFs) of both Ni and Fe sites for a series of Ni and NiFe layered double hydroxides (LDHs), which are structurally defined samples of the corresponding oxyhydroxides. The Fe sites have TOFs 20200 times higher than the Ni sites such that at an Fe content of 4.7% and above the Fe sites dominate the catalysis. Higher Fe contents lead to larger structural disorder of the NiOOH host. A volcano-type correlation was fou...
Highly active catalysts for the oxygen evolution reaction (OER) are required for the development of ...
NiFe and CoFe (MFe) layered double hydroxides (LDHs) are among the most active electrocatalysts for ...
Alkaline electrolysis is one of the most promising among gas-to-power technologies to produce hydrog...
Nickel iron oxide is considered a benchmark nonprecious catalyst for the oxygen evolution reaction (...
Nickel iron oxide is considered a benchmark nonprecious catalyst for the oxygen evolution reaction (...
Nickel-iron layered double hydroxide (NiFe LDH) is a promising oxygen evolution reaction (OER) elect...
The oxygen evolution reaction (OER) is a key process that enables the storage of renewable energies ...
A bifunctional oxygen evolution reaction (OER) mechanism, in which the energetically demanding step ...
Nickel iron layered double hydroxides are known to be one of the most highly active catalysts for th...
Nickel iron layered double hydroxides are known to be one of the most highly active catalysts for th...
NiFe and CoFe (MFe) layered double hydroxides (LDHs) are among the most active electrocatalysts for ...
Abstract Fe-containing transition-metal (oxy)hydroxides are highly active oxygen-evolution reaction ...
NiFe and CoFe (MFe) layered double hydroxides (LDHs) are among the most active electrocatalysts for ...
The oxygen evolution reaction (OER) is a key process that enables the storage of renewable energies ...
Highly active catalysts for the oxygen evolution reaction (OER) are required for the development of ...
Highly active catalysts for the oxygen evolution reaction (OER) are required for the development of ...
NiFe and CoFe (MFe) layered double hydroxides (LDHs) are among the most active electrocatalysts for ...
Alkaline electrolysis is one of the most promising among gas-to-power technologies to produce hydrog...
Nickel iron oxide is considered a benchmark nonprecious catalyst for the oxygen evolution reaction (...
Nickel iron oxide is considered a benchmark nonprecious catalyst for the oxygen evolution reaction (...
Nickel-iron layered double hydroxide (NiFe LDH) is a promising oxygen evolution reaction (OER) elect...
The oxygen evolution reaction (OER) is a key process that enables the storage of renewable energies ...
A bifunctional oxygen evolution reaction (OER) mechanism, in which the energetically demanding step ...
Nickel iron layered double hydroxides are known to be one of the most highly active catalysts for th...
Nickel iron layered double hydroxides are known to be one of the most highly active catalysts for th...
NiFe and CoFe (MFe) layered double hydroxides (LDHs) are among the most active electrocatalysts for ...
Abstract Fe-containing transition-metal (oxy)hydroxides are highly active oxygen-evolution reaction ...
NiFe and CoFe (MFe) layered double hydroxides (LDHs) are among the most active electrocatalysts for ...
The oxygen evolution reaction (OER) is a key process that enables the storage of renewable energies ...
Highly active catalysts for the oxygen evolution reaction (OER) are required for the development of ...
Highly active catalysts for the oxygen evolution reaction (OER) are required for the development of ...
NiFe and CoFe (MFe) layered double hydroxides (LDHs) are among the most active electrocatalysts for ...
Alkaline electrolysis is one of the most promising among gas-to-power technologies to produce hydrog...