Gold based multimetallic nanoalloys decorated on conjugated polymer nanofibers have been prepared using a greener approach without using any reducing agent. The as-prepared nanohybrids exhibited superior catalytic activity for solar hydrogen production under visible light (λ > 420 nm) irradiation and near infrared light irradiation. The UV–Visible diffuse reflectance spectra displayed strong absorption in the visible region which significantly favours the photocatalytic performance. Furthermore, the efficient charge separation suggested by electrochemical impedance measurement and photocurrent response curves for Au 50 Pt 24 Pd 26 /PPy nanohybrids which exhibited significant enhancement in H 2 generation rate compared to Au/PPy nanohybrids....
Nanostructured conducting polymeric materials are beneficial for electron conduction and mass transp...
We present the fabrication of core-shell-satellite Au@SiO2 -Pt nanostructures and demonstrate that L...
Hydrogen peroxide (H2O2) is one of the most important industrial oxidants. In principle, photocataly...
Conducting polymer nanostructures has been recognized as photocatlysts, a promising breakthrough in ...
We present high-yield hydrogen production through selective photocatalytic decomposition of formic a...
Metal–semiconductor nanostructures have been the subject of great interest, mainly due to their inte...
Developing highly efficient photocatalyts for water splitting is one of the grand challenges in sola...
The utilization of plasmonic energy in the form of heat, resonance energy, and/or hot carriers offer...
[EN] Seven samples of P25 titania containing Au Pt nanoalloys at constant total metal loading (0.25%...
We herein present the Au and Ag NPs synthesized via chemical reduction with green synthesized carbon...
Organic semiconducting polymers exhibited promising photocatalytic behavior for hydrogen (H2) evolut...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
Direct evidence of plasmon for enhanced H2 production is observed in photocatalytic water reduction ...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
In recent years, hybrid nanostructure consisted of plasmonic metals and different dielectrics have a...
Nanostructured conducting polymeric materials are beneficial for electron conduction and mass transp...
We present the fabrication of core-shell-satellite Au@SiO2 -Pt nanostructures and demonstrate that L...
Hydrogen peroxide (H2O2) is one of the most important industrial oxidants. In principle, photocataly...
Conducting polymer nanostructures has been recognized as photocatlysts, a promising breakthrough in ...
We present high-yield hydrogen production through selective photocatalytic decomposition of formic a...
Metal–semiconductor nanostructures have been the subject of great interest, mainly due to their inte...
Developing highly efficient photocatalyts for water splitting is one of the grand challenges in sola...
The utilization of plasmonic energy in the form of heat, resonance energy, and/or hot carriers offer...
[EN] Seven samples of P25 titania containing Au Pt nanoalloys at constant total metal loading (0.25%...
We herein present the Au and Ag NPs synthesized via chemical reduction with green synthesized carbon...
Organic semiconducting polymers exhibited promising photocatalytic behavior for hydrogen (H2) evolut...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
Direct evidence of plasmon for enhanced H2 production is observed in photocatalytic water reduction ...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
In recent years, hybrid nanostructure consisted of plasmonic metals and different dielectrics have a...
Nanostructured conducting polymeric materials are beneficial for electron conduction and mass transp...
We present the fabrication of core-shell-satellite Au@SiO2 -Pt nanostructures and demonstrate that L...
Hydrogen peroxide (H2O2) is one of the most important industrial oxidants. In principle, photocataly...