Hydrogen produced from water and solar energy holds much promise for decreasing the fossil fuel dependence. It has recently been proven that the use of quantum dots as light harvesters in combination with catalysts is a valuable strategy to obtain photogenerated hydrogen. However, the light to hydrogen conversion efficiency of these systems is reported to be lower than 40%. The low conversion efficiency is mainly due to losses occurring at the different interfacial charge-transfer reactions taking place in the multicomponent system during illumination. In this work we have analyzed all the involved reactions in the hydrogen evolution catalysis of a model system composed of CdTe quantum dots, a molecular cobalt catalyst and vitamin C as s...
Hydrogen is a promising energy carrier to replace traditional fossil fuel and could be obtained by t...
A visible-light-induced hydrogen evolution system based on a CdSe quantum dots (QDs)-TiO 2-Ni(OH)2 t...
Photodriven charge-transfer dynamics and catalytic properties have been investigated for a hybrid sy...
Photocatalytic water splitting has become a promising strategy for converting solar energy into clea...
International audiencePhotocatalytic systems comprising a hydrogenase-type catalyst and CdX (X = S, ...
The catalytic nature of semiconducting quantum dots (QDs) for photocatalytic hydrogen (H2) evolution...
Carbon quantum dots (CQDs) are new-generation light absorbers for photocatalytic H2 evolution in aqu...
Recently, colloidal semiconductor quantum dots (QDs) have shown great promise as photocatalysts for ...
Hydrogen production via light-driven water splitting is a key process in the context of solar energy...
Carbon quantum dots (CQDs) are new-generation light absorbers for photocatalytic H$_2$ evolution in ...
Photocatalytic production of hydrogen from water can directly convert solar energy into chemical ene...
Carbon quantum dots (CQDs) are established as excellent photosensitizers in combination with a molec...
Carbon quantum dots (CQDs) are established as excellent photosensitizers in combination with a molec...
Carbon dots (CDs) are a promising nanomaterial for photocatalytic applications. However, the mechani...
The present study reports photelectrochemical H<sub>2</sub> evolution using a water-solubilized S<su...
Hydrogen is a promising energy carrier to replace traditional fossil fuel and could be obtained by t...
A visible-light-induced hydrogen evolution system based on a CdSe quantum dots (QDs)-TiO 2-Ni(OH)2 t...
Photodriven charge-transfer dynamics and catalytic properties have been investigated for a hybrid sy...
Photocatalytic water splitting has become a promising strategy for converting solar energy into clea...
International audiencePhotocatalytic systems comprising a hydrogenase-type catalyst and CdX (X = S, ...
The catalytic nature of semiconducting quantum dots (QDs) for photocatalytic hydrogen (H2) evolution...
Carbon quantum dots (CQDs) are new-generation light absorbers for photocatalytic H2 evolution in aqu...
Recently, colloidal semiconductor quantum dots (QDs) have shown great promise as photocatalysts for ...
Hydrogen production via light-driven water splitting is a key process in the context of solar energy...
Carbon quantum dots (CQDs) are new-generation light absorbers for photocatalytic H$_2$ evolution in ...
Photocatalytic production of hydrogen from water can directly convert solar energy into chemical ene...
Carbon quantum dots (CQDs) are established as excellent photosensitizers in combination with a molec...
Carbon quantum dots (CQDs) are established as excellent photosensitizers in combination with a molec...
Carbon dots (CDs) are a promising nanomaterial for photocatalytic applications. However, the mechani...
The present study reports photelectrochemical H<sub>2</sub> evolution using a water-solubilized S<su...
Hydrogen is a promising energy carrier to replace traditional fossil fuel and could be obtained by t...
A visible-light-induced hydrogen evolution system based on a CdSe quantum dots (QDs)-TiO 2-Ni(OH)2 t...
Photodriven charge-transfer dynamics and catalytic properties have been investigated for a hybrid sy...