Nanostructured oxides are of utmost importance for their wide range of applications in catalysis. The rational design of the physicochemical properties of the material is the key factor in determining its catalytic performance and sometimes is limited by the classic synthetic pathways. This thesis focused on the use of scCO2 as a medium for the synthesis of nanostructured oxides and their application in related reactions in the context of green chemistry, such as oxidation reactions with H2O2 as environmentally friendly oxidant and transformation of bio-based sugars into valuable platform chemicals under mild reaction conditions, e.g. low reaction temperature, low catalyst loading and short reaction time. Importantly, the synthetic approach...
Using rapid supercritical CO2 antisolvent precipitation, a set of nanoscaled oxide catalyst precurso...
The research work presented in this thesis is focused on design, synthesis, and characterization of ...
La synthèse contrôlée de nanoparticules constitue toujours un enjeu majeur en science des matériaux ...
Nanostructured oxides are of utmost importance for their wide range of applications in catalysis. Th...
Nanostructured metal oxides and silicates are increasingly applied in catalysis, either as supports ...
Nanostructured metal oxides and silicates are increasingly applied in catalysis, either as supports ...
Nanostructured metal oxides and silicates are increasingly applied in catalysis, either as supports ...
A series of tungsten oxide-silica (WO3-SiO2) composite nanomaterials were synthesized through a nove...
Głównym celem pracy była optymalizacja syntezy wybranych materiałów tlenkowych (Co3O4 i CeO2) w waru...
The subject of this dissertation focuses on the design and synthesis of new catalysts with well-defi...
Metal and metal oxide nanoparticles have attracted increased attention due to their unusual physical...
Supercritical CO2 has been revealed as a green alternative to conventional organic solvents in sever...
The controlled synthesis of nanoparticles remains of key importance in materials science (for applic...
Using rapid supercritical CO2 antisolvent precipitation, a set of nanoscaled oxide catalyst precurso...
The research work presented in this thesis is focused on design, synthesis, and characterization of ...
La synthèse contrôlée de nanoparticules constitue toujours un enjeu majeur en science des matériaux ...
Nanostructured oxides are of utmost importance for their wide range of applications in catalysis. Th...
Nanostructured metal oxides and silicates are increasingly applied in catalysis, either as supports ...
Nanostructured metal oxides and silicates are increasingly applied in catalysis, either as supports ...
Nanostructured metal oxides and silicates are increasingly applied in catalysis, either as supports ...
A series of tungsten oxide-silica (WO3-SiO2) composite nanomaterials were synthesized through a nove...
Głównym celem pracy była optymalizacja syntezy wybranych materiałów tlenkowych (Co3O4 i CeO2) w waru...
The subject of this dissertation focuses on the design and synthesis of new catalysts with well-defi...
Metal and metal oxide nanoparticles have attracted increased attention due to their unusual physical...
Supercritical CO2 has been revealed as a green alternative to conventional organic solvents in sever...
The controlled synthesis of nanoparticles remains of key importance in materials science (for applic...
Using rapid supercritical CO2 antisolvent precipitation, a set of nanoscaled oxide catalyst precurso...
The research work presented in this thesis is focused on design, synthesis, and characterization of ...
La synthèse contrôlée de nanoparticules constitue toujours un enjeu majeur en science des matériaux ...