Plasmon hot carriers are interesting for photoredox chemical synthesis but their direct utilization is limited by their ultrafast thermalization. Therefore, they are often transferred to suitable accepting materials that expedite their lifetime. Solid-state photocatalysts are technologically more suitable than their molecular counterparts, but their photophysical processes are harder to follow due to the absence of clear optical fingerprints. Herein, the journey of hot electrons in a solid-state multimetallic photocatalyst is revealed by a combination of ultrafast visible and infrared spectroscopy. Dynamics showed that electrons formed upon silver plasmonic excitation reach the gold catalytic site within 700 fs and the electron flow could a...
Plasmonic metal nanostructures can concentrate incident optical fields in nanometer-sized volumes, c...
Hot electron processes at metallic heterojunctions are central to optical-to-chemical or electrical ...
Plasmon excitation in metal nanoparticles triggers the generation of highly energetic charge carrier...
Plasmon hot carriers are interesting for photoredox chemical synthesis but their direct utilization ...
Plasmon hot carriers are interesting for photoredox chemical synthesis but their direct utilization ...
Plasmon hot carriers are interesting for photoredox chemical synthesis but their direct utilization ...
Plasmon hot carriers are interesting for photoredox chemical synthesis but their direct utilization ...
A pulse of high kinetic energy electrons (1–3 eV) in metals can be generated after surface exposure ...
Hot electrons generated through plasmonic excitations in metal nanostructures show great promise for...
Conspectus Energy dissipation at surfaces and interfaces is mediated by excitation of elementary pro...
The recent discovery that metal nanoparticles can generate hot carriers upon light excitation is see...
The recent discovery that metal nanoparticles can generate hot carriers upon light excitation is see...
The recent discovery that metal nanoparticles can generate hot carriers upon light excitation is see...
Metal nanoparticles are excellent light absorbers. The absorption processes create highly excited el...
The smart design of plasmonic nanostructures offers a unique capability for the efficient conversion...
Plasmonic metal nanostructures can concentrate incident optical fields in nanometer-sized volumes, c...
Hot electron processes at metallic heterojunctions are central to optical-to-chemical or electrical ...
Plasmon excitation in metal nanoparticles triggers the generation of highly energetic charge carrier...
Plasmon hot carriers are interesting for photoredox chemical synthesis but their direct utilization ...
Plasmon hot carriers are interesting for photoredox chemical synthesis but their direct utilization ...
Plasmon hot carriers are interesting for photoredox chemical synthesis but their direct utilization ...
Plasmon hot carriers are interesting for photoredox chemical synthesis but their direct utilization ...
A pulse of high kinetic energy electrons (1–3 eV) in metals can be generated after surface exposure ...
Hot electrons generated through plasmonic excitations in metal nanostructures show great promise for...
Conspectus Energy dissipation at surfaces and interfaces is mediated by excitation of elementary pro...
The recent discovery that metal nanoparticles can generate hot carriers upon light excitation is see...
The recent discovery that metal nanoparticles can generate hot carriers upon light excitation is see...
The recent discovery that metal nanoparticles can generate hot carriers upon light excitation is see...
Metal nanoparticles are excellent light absorbers. The absorption processes create highly excited el...
The smart design of plasmonic nanostructures offers a unique capability for the efficient conversion...
Plasmonic metal nanostructures can concentrate incident optical fields in nanometer-sized volumes, c...
Hot electron processes at metallic heterojunctions are central to optical-to-chemical or electrical ...
Plasmon excitation in metal nanoparticles triggers the generation of highly energetic charge carrier...