Integration of noble metals into semiconductor-based nanoparticle gel structures facilitates the extraction of photoexcited charge carriers upon illumination. While charge carrier generation takes place in the semiconductor component, noble metals in contact to the semiconductor act as electron sinks. Thus, the nature of the interface between the components is of essential importance, as it dictates the characteristics of the interparticle contact. Here, the influence of the nanoscale building block design on the charge carrier dynamics in cryoaerogels consisting of CdSe/CdS nanorods and nanoplatelets as well as of gold or platinum is reported. It is shown that direct growth of noble metal domains onto the semiconductor prior to the gelatio...
The deposition of an atomically precise nanocluster, for example, Ag44(SR)30, onto a large‐band‐gap ...
Reliable synthesis of semiconductor-metal heterostructures would increase their availability for fun...
Colloidal semiconductor nanoparticles (NPs) are an attractive alternative for optoelectronic devices...
In this work, the influence of two different types of cations on the gel formation and structure of ...
In this work, a new type of multicomponent nanostructures is introduced by forming interpenetrating ...
Hybrid semiconductor-metal nanoparticles (HNPs) manifest unique, synergistic electronic and optical ...
The mobility of charge carriers across a semiconductor nanoparticle based 3D network (i.e. a gel) an...
3D nanoparticle assemblies offer a unique platform to enhance and extend the functionality and opti...
The synthesis of hybrid nanostructures that have specific properties has become a significant topic ...
Ultrafast transient absorption spectroscopy was used to investigate the nature of photoinduced charg...
Colloidal nanocrystals have been the centre of attraction of materials science research due to the a...
Metal–semiconductor hybrid nanomaterials (HNMs) exhibit unique properties that are distinct from ind...
We report on an efficient assembly approach to a variety of electrostatically stabilized all-inorgan...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Mixed aerogels from semiconductor and metal nanoparticles represent an outstanding hybrid material w...
The deposition of an atomically precise nanocluster, for example, Ag44(SR)30, onto a large‐band‐gap ...
Reliable synthesis of semiconductor-metal heterostructures would increase their availability for fun...
Colloidal semiconductor nanoparticles (NPs) are an attractive alternative for optoelectronic devices...
In this work, the influence of two different types of cations on the gel formation and structure of ...
In this work, a new type of multicomponent nanostructures is introduced by forming interpenetrating ...
Hybrid semiconductor-metal nanoparticles (HNPs) manifest unique, synergistic electronic and optical ...
The mobility of charge carriers across a semiconductor nanoparticle based 3D network (i.e. a gel) an...
3D nanoparticle assemblies offer a unique platform to enhance and extend the functionality and opti...
The synthesis of hybrid nanostructures that have specific properties has become a significant topic ...
Ultrafast transient absorption spectroscopy was used to investigate the nature of photoinduced charg...
Colloidal nanocrystals have been the centre of attraction of materials science research due to the a...
Metal–semiconductor hybrid nanomaterials (HNMs) exhibit unique properties that are distinct from ind...
We report on an efficient assembly approach to a variety of electrostatically stabilized all-inorgan...
Semiconductor-metal hybrid nanostructures offer a highly controllable platform for light-induced cha...
Mixed aerogels from semiconductor and metal nanoparticles represent an outstanding hybrid material w...
The deposition of an atomically precise nanocluster, for example, Ag44(SR)30, onto a large‐band‐gap ...
Reliable synthesis of semiconductor-metal heterostructures would increase their availability for fun...
Colloidal semiconductor nanoparticles (NPs) are an attractive alternative for optoelectronic devices...