The insoluble salt Cs15K[Co9(H2O)6(OH)3(HPO4)2(PW9O34)3] (CsCo9) is tested as heterogeneous oxygen evolution catalyst in light-induced experiments, when combined with the homogeneous photosensitizer [Ru(bpy)3]2+ and the oxidant Na2S2O8 in neutral pH. Oxygen evolution occurs in parallel to a solid transformation. Post-catalytic essays indicate that the CsCo9 salt is transformed into the corresponding [Ru(bpy)3]2+ salt, upon cesium loss. Remarkably, analogous photoactivated oxygen evolution experiments starting with the [Ru(bpy)3](5+x)K(6−2x)[Co9(H2O)6(OH)3(HPO4)2(PW9O34)3]·(39+x)H2O (RuCo9) salt demonstrate much higher efficiency and kinetics. The origin of this improved performance is at the cation-anion, photosensitizer-catalyst pairing in...
© 2017 American Chemical Society. This study explores a new method to maximize the visible-light-dri...
Finding new ways of using visible light (or, more specifically, solar irradiation) to drive commerci...
hoto-induced oxidation-enhancement in biomimetic bridged Ru(II)–Mo(VI) photo-catalyst is unexpectedl...
The insoluble salt Cs15K[Co9(H2O)6(OH)3(HPO4)2(PW9O34)3] (CsCo9) is tested as heterogeneous oxygen e...
The insoluble salt Cs15K[Co9(H2O)6(OH)3(HPO4)2(PW9O34)3] (CsCo9) is tested as heterogeneous oxygen e...
AbstractWater oxidation catalysis is recognized as the bottleneck for the development of efficient d...
Multi-nuclear cobalt cores have been proposed as molecular analogues of the natural oxygen evolving ...
The tetraruthenium polyoxometalate [Ru<sub>4</sub>(μ-O)<sub>4</sub>(μ-OH)<sub>2</sub>(H<sub>2</sub>O...
International audienceIn our research program aiming to develop new ruthenium-based polypyridine cat...
Innovative oxygen evolving catalysts, taken from the pool of nanosized, water soluble, molecular met...
ABSTRACT: The tetraruthenium polyoxometalate [Ru4(μ- O)4(μ-OH)2(H2O)4(γ-SiW10O36)2]10‑ (1) behaves a...
Water oxidation is a key step common to most artificial photosynthetic reaction schemes.[1] It is a ...
Light-driven water oxidation occurs in oxygenic photosynthesis in Photosystem II where reductive equ...
The tetraruthenium polyoxometalate [Ru4(\u3bc- O)4(\u3bc-OH)2(H2O)4(\u3b3-SiW10O36)2]10\u2011 (1) be...
Artificial photosynthesis, modeled on natural light-driven oxidation of water in Photosystem II, hol...
© 2017 American Chemical Society. This study explores a new method to maximize the visible-light-dri...
Finding new ways of using visible light (or, more specifically, solar irradiation) to drive commerci...
hoto-induced oxidation-enhancement in biomimetic bridged Ru(II)–Mo(VI) photo-catalyst is unexpectedl...
The insoluble salt Cs15K[Co9(H2O)6(OH)3(HPO4)2(PW9O34)3] (CsCo9) is tested as heterogeneous oxygen e...
The insoluble salt Cs15K[Co9(H2O)6(OH)3(HPO4)2(PW9O34)3] (CsCo9) is tested as heterogeneous oxygen e...
AbstractWater oxidation catalysis is recognized as the bottleneck for the development of efficient d...
Multi-nuclear cobalt cores have been proposed as molecular analogues of the natural oxygen evolving ...
The tetraruthenium polyoxometalate [Ru<sub>4</sub>(μ-O)<sub>4</sub>(μ-OH)<sub>2</sub>(H<sub>2</sub>O...
International audienceIn our research program aiming to develop new ruthenium-based polypyridine cat...
Innovative oxygen evolving catalysts, taken from the pool of nanosized, water soluble, molecular met...
ABSTRACT: The tetraruthenium polyoxometalate [Ru4(μ- O)4(μ-OH)2(H2O)4(γ-SiW10O36)2]10‑ (1) behaves a...
Water oxidation is a key step common to most artificial photosynthetic reaction schemes.[1] It is a ...
Light-driven water oxidation occurs in oxygenic photosynthesis in Photosystem II where reductive equ...
The tetraruthenium polyoxometalate [Ru4(\u3bc- O)4(\u3bc-OH)2(H2O)4(\u3b3-SiW10O36)2]10\u2011 (1) be...
Artificial photosynthesis, modeled on natural light-driven oxidation of water in Photosystem II, hol...
© 2017 American Chemical Society. This study explores a new method to maximize the visible-light-dri...
Finding new ways of using visible light (or, more specifically, solar irradiation) to drive commerci...
hoto-induced oxidation-enhancement in biomimetic bridged Ru(II)–Mo(VI) photo-catalyst is unexpectedl...