As one of the most remarkable oxygen evolution reaction (OER) electrocatalysts, metal chalcogenides have been intensively reported during the past few decades because of their high OER activities. It has been reported that electron-chemical conversion of metal chalcogenides into oxides/hydroxides would take place after the OER. However, the transition mechanism of such unstable structures, as well as the real active sites and catalytic activity during the OER for these electrocatalysts, has not been understood yet; therefore a direct observation for the electrocatalytic water oxidation process, especially at nano or even angstrom scale, is urgently needed. In this research, by employing advanced Cs-corrected transmission electron microscopy...
The challenges of the increasing energy consumption and global warming have prompted scientific expl...
Development of cost-effective oxygen evolution catalysts is of capital importance for the deployment...
Electrolysis of water to produce hydrogen and oxygen is a promising pathway for the storage of renew...
Water splitting is one of the cleanest ways to store energy. The production of hydrogen and oxygen g...
Transition metal dichalcogenides have been widely studied as active electrocatalysts for hydrogen ev...
Water splitting offers the opportunity for storing solar energy and, thus, producing carbon-neutral ...
Development of cost-effective oxygen evolution catalysts is of capital importance for the deployment...
The development of efficient electrocatalysts to lower the overpotential of oxygen evolution reactio...
Developing efficient catalysts is of paramount importance to oxygen evolution, a sluggish anodic rea...
The demand for clean energy has motivated people to look for fuel alternatives and hydrogen fuel was...
Oxygen evolution catalysts made out of a metal (Ni, Co, or Fe) and a pnictide or chalcogenide (P, S,...
Transition metal chalcogenides have emerged as unique electrocatalysts for the oxygen evolution reac...
The urgent need for a stable, efficient, and affordable oxygen evolution reaction (OER) catalyst has...
The question of whether the metal chalcogenides (phosphides) that have been acknowledged to be effic...
The electrolysis of water is one of the most promising strategies to produce renewable fuels and it ...
The challenges of the increasing energy consumption and global warming have prompted scientific expl...
Development of cost-effective oxygen evolution catalysts is of capital importance for the deployment...
Electrolysis of water to produce hydrogen and oxygen is a promising pathway for the storage of renew...
Water splitting is one of the cleanest ways to store energy. The production of hydrogen and oxygen g...
Transition metal dichalcogenides have been widely studied as active electrocatalysts for hydrogen ev...
Water splitting offers the opportunity for storing solar energy and, thus, producing carbon-neutral ...
Development of cost-effective oxygen evolution catalysts is of capital importance for the deployment...
The development of efficient electrocatalysts to lower the overpotential of oxygen evolution reactio...
Developing efficient catalysts is of paramount importance to oxygen evolution, a sluggish anodic rea...
The demand for clean energy has motivated people to look for fuel alternatives and hydrogen fuel was...
Oxygen evolution catalysts made out of a metal (Ni, Co, or Fe) and a pnictide or chalcogenide (P, S,...
Transition metal chalcogenides have emerged as unique electrocatalysts for the oxygen evolution reac...
The urgent need for a stable, efficient, and affordable oxygen evolution reaction (OER) catalyst has...
The question of whether the metal chalcogenides (phosphides) that have been acknowledged to be effic...
The electrolysis of water is one of the most promising strategies to produce renewable fuels and it ...
The challenges of the increasing energy consumption and global warming have prompted scientific expl...
Development of cost-effective oxygen evolution catalysts is of capital importance for the deployment...
Electrolysis of water to produce hydrogen and oxygen is a promising pathway for the storage of renew...