The oxygen evolution reaction (OER) and chlorine evolution reaction (CER) are electrochemical processes with high relevance to water splitting for (solar) energy conversion and industrial production of commodity chemicals, respectively. Carrying out the two reactions separately is challenging, since the catalytic intermediates are linked by scaling relations. Optimizing the efficiency of OER over CER in acidic media has proven especially difficult. In this regard, we have investigated the OER versus CER selectivity of manganese oxide (MnOx), a known OER catalyst. Thin films (∼5-20 nm) of MnOx were electrodeposited on glassy carbon-supported hydrous iridium oxide (IrOx/GC) in aqueous chloride solutions of pH ∼0.9. Using rotating ring-disk el...
Oxygen evolution and catalyst corrosion were studied side by side for electrodeposited MnO<sub>x</su...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2016.Cataloged from ...
Electrodeposited manganese oxide films (MnOx) are promising stable oxygen evolution catalysts. They ...
The oxygen evolution reaction (OER) and chlorine evolution reaction (CER) are electrochemical proces...
Detailed studies of the CER mechanism and ex-situ structure studies using SEM, TEM, and XPS suggest ...
IrO2 is considered one of the most active electrocatalysts for the oxygen evolution reaction (OER) r...
IrO2 is considered one of the most active electrocatalysts for the oxygen evolution reaction (OER) r...
IrO2 is considered one of the most active electrocatalysts for the oxygen evolution reaction (OER) r...
IrO2 is considered one of the most active electrocatalysts for the oxygen evolution reaction (OER) r...
IrO2 is considered one of the most active electrocatalysts for the oxygen evolution reaction (OER) r...
There is an urgent need for cheap, stable, and abundant catalyst materials for photoelectrochemical ...
There is an urgent need for cheap, stable, and abundant catalyst materials for photoelectrochemical ...
There is an urgent need for cheap, stable, and abundant catalyst materials for photoelectrochemical ...
The complex kinetics of the oxygen evolution reaction OER makes this reaction one of the most cons...
Catalysis of the oxygen evolution reaction (OER) by earth-abundant materials in the near-neutral pH ...
Oxygen evolution and catalyst corrosion were studied side by side for electrodeposited MnO<sub>x</su...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2016.Cataloged from ...
Electrodeposited manganese oxide films (MnOx) are promising stable oxygen evolution catalysts. They ...
The oxygen evolution reaction (OER) and chlorine evolution reaction (CER) are electrochemical proces...
Detailed studies of the CER mechanism and ex-situ structure studies using SEM, TEM, and XPS suggest ...
IrO2 is considered one of the most active electrocatalysts for the oxygen evolution reaction (OER) r...
IrO2 is considered one of the most active electrocatalysts for the oxygen evolution reaction (OER) r...
IrO2 is considered one of the most active electrocatalysts for the oxygen evolution reaction (OER) r...
IrO2 is considered one of the most active electrocatalysts for the oxygen evolution reaction (OER) r...
IrO2 is considered one of the most active electrocatalysts for the oxygen evolution reaction (OER) r...
There is an urgent need for cheap, stable, and abundant catalyst materials for photoelectrochemical ...
There is an urgent need for cheap, stable, and abundant catalyst materials for photoelectrochemical ...
There is an urgent need for cheap, stable, and abundant catalyst materials for photoelectrochemical ...
The complex kinetics of the oxygen evolution reaction OER makes this reaction one of the most cons...
Catalysis of the oxygen evolution reaction (OER) by earth-abundant materials in the near-neutral pH ...
Oxygen evolution and catalyst corrosion were studied side by side for electrodeposited MnO<sub>x</su...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2016.Cataloged from ...
Electrodeposited manganese oxide films (MnOx) are promising stable oxygen evolution catalysts. They ...