3D nanoparticle assemblies offer a unique platform to enhance and extend the functionality and optical/electrical properties of individual nanoparticles. Especially, a self-supported, voluminous, and porous macroscopic material built up from interconnected semiconductor nanoparticles provides new possibilities in the field of sensing, optoelectronics, and photovoltaics. Herein, a method is demonstrated for assembling semiconductor nanoparticle systems containing building blocks possessing different composition, size, shape, and surface ligands. The method is based on the controlled destabilization of the particles triggered by trivalent cations (Y3+, Yb3+, and Al3+). The effect of the cations is investigated via X-ray photoelectron...
Semiconductors nanocrystals (NCs), also called quantum dots (QDs), have attracted tremendous interes...
Hybrid nanomaterials composed of metal–semiconductor components exhibit unique properties in compari...
This dissertation contains six chapters detailing recent advances that have been made in the synthes...
We report on an efficient assembly approach to a variety of electrostatically stabilized all-inorgan...
In this work, a new type of multicomponent nanostructures is introduced by forming interpenetrating ...
The influence of interparticle contact in nanoparticle-based aerogelnetwork structures is investigat...
Metal–semiconductor hybrid nanomaterials (HNMs) exhibit unique properties that are distinct from ind...
Integration of noble metals into semiconductor-based nanoparticle gel structures facilitates the ext...
Colloidal nanocrystals have been the centre of attraction of materials science research due to the a...
Solution-based self-assembly of quasi-one-dimensional semiconductor nanostructures (nanowires) from ...
Nanomaterials have attracted considerable attention during the past decades due to their unique and ...
The mobility of charge carriers across a semiconductor nanoparticle based 3D network (i.e. a gel) an...
Employing nanocrystals (NCs) as building blocks of porous aerogel network structures allows the conv...
Luminescent quantum dots (QDs) are colloidal semiconductor nanocrystals consisting of an inorganic c...
Research activities towards the self-assembly of small organic molecules building blocks which lead ...
Semiconductors nanocrystals (NCs), also called quantum dots (QDs), have attracted tremendous interes...
Hybrid nanomaterials composed of metal–semiconductor components exhibit unique properties in compari...
This dissertation contains six chapters detailing recent advances that have been made in the synthes...
We report on an efficient assembly approach to a variety of electrostatically stabilized all-inorgan...
In this work, a new type of multicomponent nanostructures is introduced by forming interpenetrating ...
The influence of interparticle contact in nanoparticle-based aerogelnetwork structures is investigat...
Metal–semiconductor hybrid nanomaterials (HNMs) exhibit unique properties that are distinct from ind...
Integration of noble metals into semiconductor-based nanoparticle gel structures facilitates the ext...
Colloidal nanocrystals have been the centre of attraction of materials science research due to the a...
Solution-based self-assembly of quasi-one-dimensional semiconductor nanostructures (nanowires) from ...
Nanomaterials have attracted considerable attention during the past decades due to their unique and ...
The mobility of charge carriers across a semiconductor nanoparticle based 3D network (i.e. a gel) an...
Employing nanocrystals (NCs) as building blocks of porous aerogel network structures allows the conv...
Luminescent quantum dots (QDs) are colloidal semiconductor nanocrystals consisting of an inorganic c...
Research activities towards the self-assembly of small organic molecules building blocks which lead ...
Semiconductors nanocrystals (NCs), also called quantum dots (QDs), have attracted tremendous interes...
Hybrid nanomaterials composed of metal–semiconductor components exhibit unique properties in compari...
This dissertation contains six chapters detailing recent advances that have been made in the synthes...