Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced charge separation, with direct relevance for their implementation in photocatalysis. Advances in the synthesis allow for control over the size, shape and morphology, providing tunability of the optical and electronic properties. A critical determining factor of the photocatalytic cycle is the metal domain characteristics and in particular its size, a subject that lacks deep understanding. Here, using a well-defined model system of cadmium sulfide-gold nanorods, we address the effect of the gold tip size on the photocatalytic function, including the charge transfer dynamics and hydrogen production efficiency. A combination of transient absorption...
Semiconductor-metal hybrid nanostructures are interesting materials for photocatalysis. Their tunabl...
Hybrid semiconductor-metal nanoparticles (HNPs) manifest unique, synergistic electronic and optical ...
Hybrid semiconductor-metal nanoparticles (HNPs) manifest unique, synergistic electronic and optical ...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Hybrid semiconductor-metal nanoparticles (HNPs) manifest unique, synergistic electronic and optical ...
Semiconductor-metal hybrid nanostructures are interesting materials for photocatalysis. Their tunabl...
Semiconductor-metal hybrid nanostructures are interesting materials for photocatalysis. Their tunabl...
Semiconductor-metal hybrid nanostructures are interesting materials for photocatalysis. Their tunabl...
Semiconductor-metal hybrid nanostructures are interesting materials for photocatalysis. Their tunabl...
Hybrid semiconductor-metal nanoparticles (HNPs) manifest unique, synergistic electronic and optical ...
Hybrid semiconductor-metal nanoparticles (HNPs) manifest unique, synergistic electronic and optical ...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Hybrid semiconductor-metal nanoparticles (HNPs) manifest unique, synergistic electronic and optical ...
Semiconductor-metal hybrid nanostructures are interesting materials for photocatalysis. Their tunabl...
Semiconductor-metal hybrid nanostructures are interesting materials for photocatalysis. Their tunabl...
Semiconductor-metal hybrid nanostructures are interesting materials for photocatalysis. Their tunabl...
Semiconductor-metal hybrid nanostructures are interesting materials for photocatalysis. Their tunabl...
Hybrid semiconductor-metal nanoparticles (HNPs) manifest unique, synergistic electronic and optical ...
Hybrid semiconductor-metal nanoparticles (HNPs) manifest unique, synergistic electronic and optical ...