By advanced molecular dynamics simulations, we show that for a highly active ruthenium-based water oxidation catalyst the dangling carboxylate group of the catalyst plays an important role in the crucial O-O bond formation step. The interplay of the flexible group and solvent molecules facilitates two possible pathways: a direct pathway with a single solvent water molecule or a mediated pathway involving two solvent water molecules, which have similar activation barriers. Our results provide an example for which a realistic molecular dynamics approach, incorporating an explicit description of the solvent, is required to reveal the full complexity of an important catalytic reaction in aqueous solvent
A detailed computational investigation of the mechanistic aspects of the water oxidation catalysis (...
Catalysts for oxidation of water to molecular oxygen are essential in solar-driven water splitting. ...
We study the intermediate of the reaction between a ruthenium complex and 1-propen-3-ol in water us...
By advanced molecular dynamics simulations, we show that for a highly active ruthenium-based water o...
Designing catalysts for water oxidation (WOCs) that operate at low overpotentials plays an important...
Designing catalysts for water oxidation (WOCs) that operate at low overpotentials plays an important...
We present a detailed theoretical study of the pathway for water oxidation in synthetic ruthenium-ba...
Artificial water splitting is a promising technology that allows the storage of renewable energy in ...
Robust catalysts that mediate H2O oxidation are of fundamental importance for the development of nov...
Notwithstanding RuO 2 is one of the most active catalysts toward oxygen evolution reaction (OER), a...
Insight into how H2O is oxidized to O-2 is envisioned to facilitate the rational design of artificia...
We study the intermediate of the reaction between a ruthenium complex and 1-propen-3-ol in water usi...
The increasing energy demand calls for the development of sustainable energy conversion processes. H...
Water splitting contains two half-reactions, the water oxidation reaction and the hydrogen reduction...
Converging UV-vis, EPR, rRaman, and DFT calculations highlight the evolution of [Ru(4)(H(2)O)(4)(mu-...
A detailed computational investigation of the mechanistic aspects of the water oxidation catalysis (...
Catalysts for oxidation of water to molecular oxygen are essential in solar-driven water splitting. ...
We study the intermediate of the reaction between a ruthenium complex and 1-propen-3-ol in water us...
By advanced molecular dynamics simulations, we show that for a highly active ruthenium-based water o...
Designing catalysts for water oxidation (WOCs) that operate at low overpotentials plays an important...
Designing catalysts for water oxidation (WOCs) that operate at low overpotentials plays an important...
We present a detailed theoretical study of the pathway for water oxidation in synthetic ruthenium-ba...
Artificial water splitting is a promising technology that allows the storage of renewable energy in ...
Robust catalysts that mediate H2O oxidation are of fundamental importance for the development of nov...
Notwithstanding RuO 2 is one of the most active catalysts toward oxygen evolution reaction (OER), a...
Insight into how H2O is oxidized to O-2 is envisioned to facilitate the rational design of artificia...
We study the intermediate of the reaction between a ruthenium complex and 1-propen-3-ol in water usi...
The increasing energy demand calls for the development of sustainable energy conversion processes. H...
Water splitting contains two half-reactions, the water oxidation reaction and the hydrogen reduction...
Converging UV-vis, EPR, rRaman, and DFT calculations highlight the evolution of [Ru(4)(H(2)O)(4)(mu-...
A detailed computational investigation of the mechanistic aspects of the water oxidation catalysis (...
Catalysts for oxidation of water to molecular oxygen are essential in solar-driven water splitting. ...
We study the intermediate of the reaction between a ruthenium complex and 1-propen-3-ol in water us...