Non-ordered porous networks, so-called aerogels, can be achieved by the 3D assembly of quantum dots (QDs). These materials are well suited for photonic applications, however a certain quenching of the photoluminescence (PL) intensity is observed in these structures. This PL quenching is mainly attributed to the energy transfer mechanisms that result from the close contact of the nanoparticles in the network. Here, we demonstrate the formation of a novel aerogel material with non-quenching PL behaviour by non-classical, reversible gel formation from tetrazole capped silica encapsulated QDs. Monitoring of the gelation/degelation by optical spectroscopy showed that the optical properties of the nanocrystals could be preserved in the 3D network...
We review recent experimental work to utilize the size dependence of the luminescence quenching of c...
3D nanoparticle assemblies offer a unique platform to enhance and extend the functionality and opti...
This thesis focuses on both the fundamental aspects as well as applications of colloidal semiconduct...
Non-ordered porous networks, so-called aerogels, can be achieved by the 3D assembly of quantum dots ...
Nanomaterials have attracted considerable attention during the past decades due to their unique and ...
We report on an efficient assembly approach to a variety of electrostatically stabilized all-inorgan...
Employing nanocrystals (NCs) as building blocks of porous aerogel network structures allows the conv...
The influence of interparticle contact in nanoparticle-based aerogelnetwork structures is investigat...
In this work, we have developed novel hybrid quantum dot gels based on the controllable and reversib...
Gels and aerogels derived from colloidal nanoparticles not only own the advantages of the traditiona...
In this work, we show strong experimental evidence in favor of a proposed incorporation mechanism of...
Inorganic nanocrystals exhibit a wide variety of optical, electronic, chemical, and electrochemical ...
Quantum dots (QDs) have been envisaged as very promising materials for the development of advanced o...
Luminescent quantum dots (QDs) are colloidal semiconductor nanocrystals consisting of an inorganic c...
Quantum dots (QDs) are attractive because of their unique size-dependent optical and electronic prop...
We review recent experimental work to utilize the size dependence of the luminescence quenching of c...
3D nanoparticle assemblies offer a unique platform to enhance and extend the functionality and opti...
This thesis focuses on both the fundamental aspects as well as applications of colloidal semiconduct...
Non-ordered porous networks, so-called aerogels, can be achieved by the 3D assembly of quantum dots ...
Nanomaterials have attracted considerable attention during the past decades due to their unique and ...
We report on an efficient assembly approach to a variety of electrostatically stabilized all-inorgan...
Employing nanocrystals (NCs) as building blocks of porous aerogel network structures allows the conv...
The influence of interparticle contact in nanoparticle-based aerogelnetwork structures is investigat...
In this work, we have developed novel hybrid quantum dot gels based on the controllable and reversib...
Gels and aerogels derived from colloidal nanoparticles not only own the advantages of the traditiona...
In this work, we show strong experimental evidence in favor of a proposed incorporation mechanism of...
Inorganic nanocrystals exhibit a wide variety of optical, electronic, chemical, and electrochemical ...
Quantum dots (QDs) have been envisaged as very promising materials for the development of advanced o...
Luminescent quantum dots (QDs) are colloidal semiconductor nanocrystals consisting of an inorganic c...
Quantum dots (QDs) are attractive because of their unique size-dependent optical and electronic prop...
We review recent experimental work to utilize the size dependence of the luminescence quenching of c...
3D nanoparticle assemblies offer a unique platform to enhance and extend the functionality and opti...
This thesis focuses on both the fundamental aspects as well as applications of colloidal semiconduct...