H2 production by water splitting is hindered mainly by the lack of low-cost and efficient photocatalysts. Here we show that sub-nanometric silver clusters can catalyze the anisotropic growth of gold nanostructures by preferential adsorption at certain crystal planes of Au seeds, with the result that the final nanostructure can be tuned via the cluster/seed ratio. Such semiconducting Ag clusters are extremely stable and retain their electronic structure even after adsorption at the tips of Au nanorods, enabling various photocatalytic experiments, such as oxygen evolution from basic solutions. In the absence of electron scavengers, UV irradiation generates photoelectrons, which are stored within the nanorods, increasing their Au Fermi level u...
Au<sub>25</sub>(Cys)<sub>18</sub> nanoclusters/g-C<sub>3</sub>N<sub>4</sub> nanosheets composite pho...
Unlike catalytic reactions thermally driven by metal nanoparticles, reaction rates in photocatalysis...
Hydrogen–metal interaction is the foundation of many technologies and processes, but how hydrogen be...
H2 production by water splitting is hindered mainly by the lack of low-cost and efficient photocatal...
H<sub>2</sub> production by water splitting is hindered mainly by the lack of low-cost and efficient...
While core–shell nanomaterials are highly desirable for realizing enhanced optical and catalytic pro...
International audienceSub-nanometer silver clusters that exhibit discrete electronic structure with ...
Experiments using vibrationally resolved ultraviolet photoelectron spectroscopy show that oxygen sel...
Anisotropic gold nanostructures prepared by the seed method in the presence of Ag ions have been use...
Abstract: Cluster beam deposition is employed for fabricating well-defined bimetallic plasmonic phot...
Sub-nanometer silver clusters that exhibit discrete electronic structure with molecular-like propert...
AuAg nanoclusters are promising supported co-catalysts for photocatalytic hydrogen reduction. Howeve...
Metal co-catalysts are essential for enhancing photocatalytic performance, especially in reduction r...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
Au<sub>25</sub>(Cys)<sub>18</sub> nanoclusters/g-C<sub>3</sub>N<sub>4</sub> nanosheets composite pho...
Unlike catalytic reactions thermally driven by metal nanoparticles, reaction rates in photocatalysis...
Hydrogen–metal interaction is the foundation of many technologies and processes, but how hydrogen be...
H2 production by water splitting is hindered mainly by the lack of low-cost and efficient photocatal...
H<sub>2</sub> production by water splitting is hindered mainly by the lack of low-cost and efficient...
While core–shell nanomaterials are highly desirable for realizing enhanced optical and catalytic pro...
International audienceSub-nanometer silver clusters that exhibit discrete electronic structure with ...
Experiments using vibrationally resolved ultraviolet photoelectron spectroscopy show that oxygen sel...
Anisotropic gold nanostructures prepared by the seed method in the presence of Ag ions have been use...
Abstract: Cluster beam deposition is employed for fabricating well-defined bimetallic plasmonic phot...
Sub-nanometer silver clusters that exhibit discrete electronic structure with molecular-like propert...
AuAg nanoclusters are promising supported co-catalysts for photocatalytic hydrogen reduction. Howeve...
Metal co-catalysts are essential for enhancing photocatalytic performance, especially in reduction r...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
Au<sub>25</sub>(Cys)<sub>18</sub> nanoclusters/g-C<sub>3</sub>N<sub>4</sub> nanosheets composite pho...
Unlike catalytic reactions thermally driven by metal nanoparticles, reaction rates in photocatalysis...
Hydrogen–metal interaction is the foundation of many technologies and processes, but how hydrogen be...