AbstractThe generation of H2 from protons and electrons by complexes of cobalt has an extensive history. During the past decade, interest in this subject has increased as a result of developments in hydrogen generation that are driven electrochemically or photochemically. This article reviews the subject of hydrogen generation using Co complexes as catalysts and discusses the mechanistic implications of the systems studied for making H2. This article is part of a Special Issue entitled: Metals in Bioenergetics and Biomimetics Systems
International audienceThe future of energy supply depends on innovative breakthroughs regarding the ...
Natural photosynthesis uses sunlight to drive the conversion of energy-poor mols. (H_2O, CO_2) to en...
Several cobalt complexes catalyze the evolution of hydrogen from acidic solutions, both homogeneousl...
The generation of H-2 from protons and electrons by complexes of cobalt has an extensive history. Du...
The generation of H-2 from protons and electrons by complexes of cobalt has an extensive history. Du...
The generation of H-2 from protons and electrons by complexes of cobalt has an extensive history. Du...
AbstractThe generation of H2 from protons and electrons by complexes of cobalt has an extensive hist...
Artificial Photosynthesis (AP) is a method of harnessing solar energy to generate clean burning hydr...
99% of our energy originates from the sun. For millions of years, plants have captured and stored th...
99% of our energy originates from the sun. For millions of years, plants have captured and stored th...
The reductive part of artificial photosynthesis, the reduction of protons into H2, is a two electron...
International audienceThe future of energy supply depends on innovative breakthroughs regarding the ...
International audienceThe future of energy supply depends on innovative breakthroughs regarding the ...
International audienceThe future of energy supply depends on innovative breakthroughs regarding the ...
Natural photosynthesis uses sunlight to drive the conversion of energy-poor mols. (H_2O, CO_2) to en...
International audienceThe future of energy supply depends on innovative breakthroughs regarding the ...
Natural photosynthesis uses sunlight to drive the conversion of energy-poor mols. (H_2O, CO_2) to en...
Several cobalt complexes catalyze the evolution of hydrogen from acidic solutions, both homogeneousl...
The generation of H-2 from protons and electrons by complexes of cobalt has an extensive history. Du...
The generation of H-2 from protons and electrons by complexes of cobalt has an extensive history. Du...
The generation of H-2 from protons and electrons by complexes of cobalt has an extensive history. Du...
AbstractThe generation of H2 from protons and electrons by complexes of cobalt has an extensive hist...
Artificial Photosynthesis (AP) is a method of harnessing solar energy to generate clean burning hydr...
99% of our energy originates from the sun. For millions of years, plants have captured and stored th...
99% of our energy originates from the sun. For millions of years, plants have captured and stored th...
The reductive part of artificial photosynthesis, the reduction of protons into H2, is a two electron...
International audienceThe future of energy supply depends on innovative breakthroughs regarding the ...
International audienceThe future of energy supply depends on innovative breakthroughs regarding the ...
International audienceThe future of energy supply depends on innovative breakthroughs regarding the ...
Natural photosynthesis uses sunlight to drive the conversion of energy-poor mols. (H_2O, CO_2) to en...
International audienceThe future of energy supply depends on innovative breakthroughs regarding the ...
Natural photosynthesis uses sunlight to drive the conversion of energy-poor mols. (H_2O, CO_2) to en...
Several cobalt complexes catalyze the evolution of hydrogen from acidic solutions, both homogeneousl...