Plasmonic metal nanocatalysts can be employed to efficiently boost the conventional catalytic reaction through the energy of photons. This work demonstrates a facile ultrasonic-assisted galvanic replacement method to successfully fabricate the highly open AuAg nanobowls with tunable atomic ratio, which act as the catalytically active site and the light absorbers simultaneously. By virtue of the synergistic and electronic effect between Au and Ag, as well as unique bowl-like structure, the resulted AuAg nanobowls exhibit superior electrocatalytic performances toward ethylene glycol oxidation than that of the bare Au. More interestingly, such AuAg nanobowls also show the surface plasmon resonance (SPR)-induced enhancement of electrocatalytic ...
This work describes a facile and effective method for synthesis of concave Au@Pt nanocubes via a gal...
Utilizing sustainable and clean solar energy in the visible-NIR range to drive chemical transformati...
Harvesting the full bandwidth of the solar spectrum, especially the near infrared portion, remains a...
The surface plasmon resonance (SPR) effect on noble metals to convert solar energy into chemical has...
Oxygen reduction reaction (ORR) is of paramount importance in polymer electrolyte membrane fuel cell...
Ethanol, as a sustainable biomass fuel, is endowed with the merits of theoretically high energy dens...
Recently, the direct utilization of plasmonic metal nanostructures in accelerating the electrochemic...
In recent years, a promising role of plasmonic metal nanoparticles (NPs) has been demonstrated towar...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
Solar driven catalysis by semiconductors is considered as a promising route to mitigate environmenta...
Noble metals are well-known for their surface plasmon resonance effect that enables strong light abs...
The use of the surface plasmon resonance (SPR) effect of plasmonic metal nanocomposites to promote p...
This work describes a facile and effective method for synthesis of concave Au@Pt nanocubes via a gal...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
Localised surface plasmon resonances (LSPRs) of sub-wavelength metallic nanoantennas can greatly imp...
This work describes a facile and effective method for synthesis of concave Au@Pt nanocubes via a gal...
Utilizing sustainable and clean solar energy in the visible-NIR range to drive chemical transformati...
Harvesting the full bandwidth of the solar spectrum, especially the near infrared portion, remains a...
The surface plasmon resonance (SPR) effect on noble metals to convert solar energy into chemical has...
Oxygen reduction reaction (ORR) is of paramount importance in polymer electrolyte membrane fuel cell...
Ethanol, as a sustainable biomass fuel, is endowed with the merits of theoretically high energy dens...
Recently, the direct utilization of plasmonic metal nanostructures in accelerating the electrochemic...
In recent years, a promising role of plasmonic metal nanoparticles (NPs) has been demonstrated towar...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
Solar driven catalysis by semiconductors is considered as a promising route to mitigate environmenta...
Noble metals are well-known for their surface plasmon resonance effect that enables strong light abs...
The use of the surface plasmon resonance (SPR) effect of plasmonic metal nanocomposites to promote p...
This work describes a facile and effective method for synthesis of concave Au@Pt nanocubes via a gal...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
Localised surface plasmon resonances (LSPRs) of sub-wavelength metallic nanoantennas can greatly imp...
This work describes a facile and effective method for synthesis of concave Au@Pt nanocubes via a gal...
Utilizing sustainable and clean solar energy in the visible-NIR range to drive chemical transformati...
Harvesting the full bandwidth of the solar spectrum, especially the near infrared portion, remains a...