Catalytic materials are an essential component of the chemical industry. They find applications in everything from fine chemical manufacturing to greenhouse gas mitigation. They are indispensable for developing a sustainable future. Their development has been continuous, from early trial and error efforts to the first fundamental insights gained through surface science, to modern in-situ characterization and computational predictions. The accumulation of knowledge on the working principles of catalytic surfaces allowed designing and producing better systems with improved performance. Even though tremendous progress has been made thanks to surface science techniques, these studies are usually performed under ultra-high vacuum and are therefo...
We take here the perspective of a nanochemist on the field of colloidal nanocrystals, focusing speci...
Colloidal nanocrystals have many advantages over those synthesized by other means due to the flexib...
Colloidal chemistry is used to control the size, shape, morphology, and composition of metal nanopar...
Recent advances of a colloidal chemistry can offer great opportunities to fabricate and design nanop...
Recent advances of a colloidal chemistry can offer great opportunities to fabricate and design nanoc...
Compared to conventional preparation methods for supported heterogeneous catalysts, the use of collo...
Industrial heterogeneous catalysts, composed of metal nanoparticles, have been widely utilized owing...
Nanocatalysis has emerged as a field at the interface between homogeneous and heterogeneous catalysi...
Nanocatalysts show excellent catalytic activity because of their immense surface-to-volume ratio. In...
Colloidally-synthesized nanoparticles are advantageous (e.g. control of size/morphology) compared to...
Colloidal nanocrystals are the ideal building blocks for the fabrication of functional materials. Us...
This thesis summarizes the results of 20 original publications which are covering three closely conn...
A nanoparticle with well-defined surfaces, prepared through colloidal chemistry, enables it to be st...
When metal nanoparticles are supported on the surface of an inert carrier, the resulting materials c...
Bottom-up approaches for the synthesis of nanostructured heterogeneous (electro-) catalysts, via the...
We take here the perspective of a nanochemist on the field of colloidal nanocrystals, focusing speci...
Colloidal nanocrystals have many advantages over those synthesized by other means due to the flexib...
Colloidal chemistry is used to control the size, shape, morphology, and composition of metal nanopar...
Recent advances of a colloidal chemistry can offer great opportunities to fabricate and design nanop...
Recent advances of a colloidal chemistry can offer great opportunities to fabricate and design nanoc...
Compared to conventional preparation methods for supported heterogeneous catalysts, the use of collo...
Industrial heterogeneous catalysts, composed of metal nanoparticles, have been widely utilized owing...
Nanocatalysis has emerged as a field at the interface between homogeneous and heterogeneous catalysi...
Nanocatalysts show excellent catalytic activity because of their immense surface-to-volume ratio. In...
Colloidally-synthesized nanoparticles are advantageous (e.g. control of size/morphology) compared to...
Colloidal nanocrystals are the ideal building blocks for the fabrication of functional materials. Us...
This thesis summarizes the results of 20 original publications which are covering three closely conn...
A nanoparticle with well-defined surfaces, prepared through colloidal chemistry, enables it to be st...
When metal nanoparticles are supported on the surface of an inert carrier, the resulting materials c...
Bottom-up approaches for the synthesis of nanostructured heterogeneous (electro-) catalysts, via the...
We take here the perspective of a nanochemist on the field of colloidal nanocrystals, focusing speci...
Colloidal nanocrystals have many advantages over those synthesized by other means due to the flexib...
Colloidal chemistry is used to control the size, shape, morphology, and composition of metal nanopar...