In this study, an interfacial modification layer was applied to improve the plasmon-induced light energy conversion of a gallium(iii) oxide (Ga2O3) photoelectrode, which possesses a much more negative conduction band potential compared with the reduction potential of photons to hydrogen. The plasmon-induced photocurrent generation under visible light irradiation was observed with Au nanoparticle-loaded Ga2O3 (Au-NPs/Ga2O3). An interfacial modification was carried out by depositing a titanium dioxide (TiO2) thin-film layer on Au-NPs/Ga(2)O(3)via atomic layer deposition. Since the surface states of TiO2 possess excellent hole-trapping ability, this interfacial modification remarkably improved the generation of plasmon-induced photocurrent in ...
Cathodoluminescence spectroscopy is profitably exploited to study energy transfer mechanisms in Au a...
We report a study on plasmon-induced photoelectrochemistry from gold nanoparticles incorporated in d...
Water reduction under two different visible-light ranges (λ > 400 nm and λ > 435 nm) was investigate...
The heterointerface engineering at metal/semiconductor (MS) hetero-interfaces in Au/Ga2O3/TiO2 plasm...
Solar energy has been widely recognized as the most promising future energy source owing to its cont...
Recent years have witnessed an increasing interest in highly-efficient absorbers of visible light fo...
AbstractSurface plasmon polariton (SPP) is electro-magnetic wave coupled to free electron oscillatio...
Bio-inspired nano-electronic devices are key instruments for the development of advanced artificial ...
Abstract Although TiO2 was formerly a common material for photocatalysis reactions, its wide band ga...
In this study, we demonstrated an improvement in the plasmon-enhanced photocurrent generation due to...
Exploiting plasmonic metal nanostructure is of great importance to achieve highly efficient light-ma...
A well-designed nanocomposite structure, Au/Al2O3/TiO2, that is Au-decorated TiO2 with an atomic-lay...
Herein, we explore a strategy for significantly enhancing the photoelectrochemical (PEC) water split...
Surface plasmonic resonance (SPR) is a new paradigm in photoelectrochemical (PEC) research that real...
Plasmonic photocatalysis, i.e., photocatalysis with activity under visible-light (vis) irradiation d...
Cathodoluminescence spectroscopy is profitably exploited to study energy transfer mechanisms in Au a...
We report a study on plasmon-induced photoelectrochemistry from gold nanoparticles incorporated in d...
Water reduction under two different visible-light ranges (λ > 400 nm and λ > 435 nm) was investigate...
The heterointerface engineering at metal/semiconductor (MS) hetero-interfaces in Au/Ga2O3/TiO2 plasm...
Solar energy has been widely recognized as the most promising future energy source owing to its cont...
Recent years have witnessed an increasing interest in highly-efficient absorbers of visible light fo...
AbstractSurface plasmon polariton (SPP) is electro-magnetic wave coupled to free electron oscillatio...
Bio-inspired nano-electronic devices are key instruments for the development of advanced artificial ...
Abstract Although TiO2 was formerly a common material for photocatalysis reactions, its wide band ga...
In this study, we demonstrated an improvement in the plasmon-enhanced photocurrent generation due to...
Exploiting plasmonic metal nanostructure is of great importance to achieve highly efficient light-ma...
A well-designed nanocomposite structure, Au/Al2O3/TiO2, that is Au-decorated TiO2 with an atomic-lay...
Herein, we explore a strategy for significantly enhancing the photoelectrochemical (PEC) water split...
Surface plasmonic resonance (SPR) is a new paradigm in photoelectrochemical (PEC) research that real...
Plasmonic photocatalysis, i.e., photocatalysis with activity under visible-light (vis) irradiation d...
Cathodoluminescence spectroscopy is profitably exploited to study energy transfer mechanisms in Au a...
We report a study on plasmon-induced photoelectrochemistry from gold nanoparticles incorporated in d...
Water reduction under two different visible-light ranges (λ > 400 nm and λ > 435 nm) was investigate...