A comparative computational study of the reaction mechanisms for hydrocarbon oxidations catalysed by Mn- and Fe-doped nanoporous aluminophosphates shows distinctive features for each transition metal depending on its electronic configuration. Preactivation of Mn catalysts is easier due to the higher stability of MnII, but its oxidation during propagation requires activation barriers. In contrast, preactivation of Fe is more difficult and avoids a direct Fe reduction because of the low stability of Fe is only produced at the end of the propagation cycle, favoured by an energetic compensation caused by the simultaneous exothermic oxidation of an alcohol molecule. Fe-catalysed propagation is kinetically favoured since it requires lower activat...
The “holy grail” of renewable, sustainable energy is artificial replication of the only natural proc...
Oxidation chemistry is central to life and to the modern chemical industry and hence understanding c...
With regard to the catalysis of oxidation reactions by noble metals, the addition of FeOx to an Al2O...
Trabajo presentado en la 15th International Conference on Theoretical Aspects of Catalysis, celebrad...
Trabajo presentado en la 15th International Conference on Theoretical Aspects of Catalysis, celebrad...
Transition metal oxide-based systems as catalysts for oxidative reactions are studied. Utilizing aer...
Structure-property correlations, which direct the formation of specific active-acid sites, in nanopo...
The authors have synthesized nanofibrous aluminum oxyhydroxide (AlOOH), modified with different amou...
Iron (2 wt%) was incorporated into the structure of microporous AlPO4-5 (FAPOcal) and the mesoporous...
Catalytically active transition-metal ions in high oxidation states (CoIII, MnIII, FeIII), have been...
© 2015 American Chemical Society. A novel synthetic strategy for the design of metal nanoparticles b...
Traditionally, oxidation catalysis has used stoichiometric oxidants, often producing toxic and non-r...
The thesis presented here is focused on fabricating thermally stable and tunable mesoporous manganes...
A series of novel bimetallic aluminophosphate catalysts were prepared with the simultaneous isomorph...
Periodic ab initio QM calculations are employed in order to study the structure and redox properties...
The “holy grail” of renewable, sustainable energy is artificial replication of the only natural proc...
Oxidation chemistry is central to life and to the modern chemical industry and hence understanding c...
With regard to the catalysis of oxidation reactions by noble metals, the addition of FeOx to an Al2O...
Trabajo presentado en la 15th International Conference on Theoretical Aspects of Catalysis, celebrad...
Trabajo presentado en la 15th International Conference on Theoretical Aspects of Catalysis, celebrad...
Transition metal oxide-based systems as catalysts for oxidative reactions are studied. Utilizing aer...
Structure-property correlations, which direct the formation of specific active-acid sites, in nanopo...
The authors have synthesized nanofibrous aluminum oxyhydroxide (AlOOH), modified with different amou...
Iron (2 wt%) was incorporated into the structure of microporous AlPO4-5 (FAPOcal) and the mesoporous...
Catalytically active transition-metal ions in high oxidation states (CoIII, MnIII, FeIII), have been...
© 2015 American Chemical Society. A novel synthetic strategy for the design of metal nanoparticles b...
Traditionally, oxidation catalysis has used stoichiometric oxidants, often producing toxic and non-r...
The thesis presented here is focused on fabricating thermally stable and tunable mesoporous manganes...
A series of novel bimetallic aluminophosphate catalysts were prepared with the simultaneous isomorph...
Periodic ab initio QM calculations are employed in order to study the structure and redox properties...
The “holy grail” of renewable, sustainable energy is artificial replication of the only natural proc...
Oxidation chemistry is central to life and to the modern chemical industry and hence understanding c...
With regard to the catalysis of oxidation reactions by noble metals, the addition of FeOx to an Al2O...