The thesis work focuses on electrochemical and photoelectrochemical catalytic reactions. In particular, it is structured in three sections: 1) The study of novel iron complexes with Schiff base ligands for the electrochemical reduction of carbon dioxide to CO, 2) Photoelectrochemical water oxidation based on nanostructured oxides functionalized with an organic chromophore to produce hybrid photoactive materials, 3) Emergin approaches towards artificial photosynthesis based on electrocarboxylation of organic molecules and photoelectrosynthetic C-H activation of organic substrates.
The thesis work focuses on electrochemical and photoelectrochemical catalytic reactions. In particular, it is structured in three sections: 1) The study of novel iron complexes with Schiff base ligands for the electrochemical reduction of carbon dioxide to CO, 2) Photoelectrochemical water oxidation based on nanostructured oxides functionalized with an organic chromophore to produce hybrid photoactive materials, 3) Emergin approaches towards artificial photosynthesis based on electrocarboxylation of organic molecules and photoelectrosynthetic C-H activation of organic substrates.
Novel molecularly designed strategies for Artificial Photosynthesis / Bonetto, Ruggero. - (2023 Mar 24).
Novel molecularly designed strategies for Artificial Photosynthesis
BONETTO, RUGGERO
2023
Abstract
The thesis work focuses on electrochemical and photoelectrochemical catalytic reactions. In particular, it is structured in three sections: 1) The study of novel iron complexes with Schiff base ligands for the electrochemical reduction of carbon dioxide to CO, 2) Photoelectrochemical water oxidation based on nanostructured oxides functionalized with an organic chromophore to produce hybrid photoactive materials, 3) Emergin approaches towards artificial photosynthesis based on electrocarboxylation of organic molecules and photoelectrosynthetic C-H activation of organic substrates.File | Dimensione | Formato | |
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Thesis_Ruggero_Bonetto_revised_fin.pdf
Open Access dal 24/03/2024
Descrizione: Thesis_Ruggero_Bonetto_revised_fin
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