This PhD thesis is devoted to the preparation and characterization of materials for electrocatalytic applications. The focus has been on the surface of electrodes. The physical and chemical structure of surfaces is one of the main variables of electrocatalytic properties. In particular, the physical structure of a surface (amorphous vs. crystalline) is often claimed to affect the surface activity of electrocatalysts. Also, the chemical structure (active sites on flat vs. stepped facets) has been claimed to be an essential variable influencing catalysis as well as electrocatalysis. Scrutiny of both situations was performed in our laboratory by preparing a series of transition metals oxides (e.g. Ir, Ru, Ni, Co) used in electrochemically activate electrodes, for the reactions of hydrogen and oxygen evolution. A number of techniques have been used: i) electrochemical (CV, polarization); ii) non electrochemical (XRD, TGA, SEM, EDX). Two novel synthetic methods for the production of metal oxides nanoparticles have been implemented.

PREPARATION AND PERFORMANCE EVALUATION OF MATERIALS FOR ELECTROCATALYTIC APPLICATIONS / A. Colombo ; supervisor: Sergio Trasatti ; co-supervisor: Edoardo Guerrini ; coordinatore: Dominique Roberto. DIPARTIMENTO DI CHIMICA, 2010 Dec 15. 23. ciclo, Anno Accademico 2010. [10.13130/colombo-alessandra_phd2010-12-15].

PREPARATION AND PERFORMANCE EVALUATION OF MATERIALS FOR ELECTROCATALYTIC APPLICATIONS

A. Colombo
2010

Abstract

This PhD thesis is devoted to the preparation and characterization of materials for electrocatalytic applications. The focus has been on the surface of electrodes. The physical and chemical structure of surfaces is one of the main variables of electrocatalytic properties. In particular, the physical structure of a surface (amorphous vs. crystalline) is often claimed to affect the surface activity of electrocatalysts. Also, the chemical structure (active sites on flat vs. stepped facets) has been claimed to be an essential variable influencing catalysis as well as electrocatalysis. Scrutiny of both situations was performed in our laboratory by preparing a series of transition metals oxides (e.g. Ir, Ru, Ni, Co) used in electrochemically activate electrodes, for the reactions of hydrogen and oxygen evolution. A number of techniques have been used: i) electrochemical (CV, polarization); ii) non electrochemical (XRD, TGA, SEM, EDX). Two novel synthetic methods for the production of metal oxides nanoparticles have been implemented.
15-dic-2010
Settore CHIM/02 - Chimica Fisica
hydrogen economy ; electrocatalysis ; transition metal oxides ; nanoparticles
TRASATTI, SERGIO
GUERRINI, EDOARDO
ROBERTO, DOMINIQUE MARIE
Doctoral Thesis
PREPARATION AND PERFORMANCE EVALUATION OF MATERIALS FOR ELECTROCATALYTIC APPLICATIONS / A. Colombo ; supervisor: Sergio Trasatti ; co-supervisor: Edoardo Guerrini ; coordinatore: Dominique Roberto. DIPARTIMENTO DI CHIMICA, 2010 Dec 15. 23. ciclo, Anno Accademico 2010. [10.13130/colombo-alessandra_phd2010-12-15].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/150125
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