Utilization of solarenergy in organic semiconductorsrelies oncomplicated photophysical processes due to the strong electron-holeinteractions. To gain a better understanding of these processes andtheir effect on the photocatalytic performance of non-fullerene acceptors(NFAs) within nanoparticles (NPs), we compared the excited-state dynamicsand photocatalytic hydrogen production activity of two NFA-based NPs,Y5 and Y6. Our results show that under LED light irradiation, Y5 NPsexhibit 14 times better hydrogen production activity than Y6 NPs.The hydrogen production activity was also evaluated under Xenon lightirradiation (AM1.5G, 100 mW & BULL;cm(-2)) for Y5 NPs,yielding 410 mmol/g after 24 h. Time-resolved spectroscopy experimentsrevealed a...
In this thesis, time-resolved spectroscopic techniques are used to link the activity of materials fo...
Hydrogen produced from water and solar energy holds much promise for decreasing the fossil fuel d...
Hybrid semiconductor-metal nanoparticles (HNPs) manifest unique, synergistic electronic and optical ...
Utilization of solarenergy in organic semiconductorsrelies oncomplicated photophysical processes due...
Photocatalysts formed from a single organic semiconductor typically suffer from inefficient intrinsi...
Organic semiconductor photocatalysts for the production of solar fuels are attractive as they can be...
The recent interest in the application of organic semiconductor colloids to photocatalytic hydrogen ...
In this review article, nanocatalysts for solar hydrogen production are the focus of discussion as t...
This lecture presents recent progress made in photocatalytic hydrogen production utilizing solar ene...
This lecture presents recent progress made in photocatalytic hydrogen production utilizing solar ene...
This lecture presents recent progress made in photocatalytic hydrogen production utilizing solar ene...
Photocatalysis exploits light to perform important processes as solar fuel production by water split...
In recent decades, the use of photocatalysts in the evolution of hydrogen (H2) has received much att...
The catalytic nature of semiconducting quantum dots (QDs) for photocatalytic hydrogen (H2) evolution...
The effect of hole localization on photocatalytic activity of Pt-tipped semiconductor nanocrystals i...
In this thesis, time-resolved spectroscopic techniques are used to link the activity of materials fo...
Hydrogen produced from water and solar energy holds much promise for decreasing the fossil fuel d...
Hybrid semiconductor-metal nanoparticles (HNPs) manifest unique, synergistic electronic and optical ...
Utilization of solarenergy in organic semiconductorsrelies oncomplicated photophysical processes due...
Photocatalysts formed from a single organic semiconductor typically suffer from inefficient intrinsi...
Organic semiconductor photocatalysts for the production of solar fuels are attractive as they can be...
The recent interest in the application of organic semiconductor colloids to photocatalytic hydrogen ...
In this review article, nanocatalysts for solar hydrogen production are the focus of discussion as t...
This lecture presents recent progress made in photocatalytic hydrogen production utilizing solar ene...
This lecture presents recent progress made in photocatalytic hydrogen production utilizing solar ene...
This lecture presents recent progress made in photocatalytic hydrogen production utilizing solar ene...
Photocatalysis exploits light to perform important processes as solar fuel production by water split...
In recent decades, the use of photocatalysts in the evolution of hydrogen (H2) has received much att...
The catalytic nature of semiconducting quantum dots (QDs) for photocatalytic hydrogen (H2) evolution...
The effect of hole localization on photocatalytic activity of Pt-tipped semiconductor nanocrystals i...
In this thesis, time-resolved spectroscopic techniques are used to link the activity of materials fo...
Hydrogen produced from water and solar energy holds much promise for decreasing the fossil fuel d...
Hybrid semiconductor-metal nanoparticles (HNPs) manifest unique, synergistic electronic and optical ...