NOSOE

Nanocrystalline oxides for selective oxidative electrocatalysis

 Coordinatore "USTAV FYZIKALNI CHEMIE J. HEYROVSKEHO AV CR, v. v. i." 

 Organization address address: Dolejskova 2155/3
city: PRAHA 8
postcode: 182 23

contact info
Titolo: Dr.
Nome: Petr
Cognome: Krtil
Email: send email
Telefono: -266053406
Fax: -286581887

 Nazionalità Coordinatore Czech Republic [CZ]
 Totale costo 179˙690 €
 EC contributo 179˙690 €
 Programma FP7-PEOPLE
Specific programme "People" implementing the Seventh Framework Programme of the European Community for research, technological development and demonstration activities (2007 to 2013)
 Code Call FP7-PEOPLE-2007-4-2-IIF
 Funding Scheme MC-IIF
 Anno di inizio 2009
 Periodo (anno-mese-giorno) 2009-01-01   -   2010-12-31

 Partecipanti

# participant  country  role  EC contrib. [€] 
1    "USTAV FYZIKALNI CHEMIE J. HEYROVSKEHO AV CR, v. v. i."

 Organization address address: Dolejskova 2155/3
city: PRAHA 8
postcode: 182 23

contact info
Titolo: Dr.
Nome: Petr
Cognome: Krtil
Email: send email
Telefono: -266053406
Fax: -286581887

CZ (PRAHA 8) coordinator 0.00

Mappa

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techniques    exafs    xanes    spectroscopy    materials    absorption    ray    active    prepared       structure    obtain    situ    surface    oxides    oxide    electrocatalytic    selectivity   

 Obiettivo del progetto (Objective)

'The proposed project aims at understanding of the electrocatalytic activity and selectivity of the nanoctrystalline oxide electrodes in oxidation processes. Nanocrystalline forms of electrocatalytically active oxides based on pure RuO2 and Co3O4 and on the oxides derived from those by hetero-static substitution will be synthesized by advanced solution based techniques to obtain single phase materials with defined particle size and shape. Prepared materials will be characterized by diffraction techniques, X-ray absorption spectroscopies (EXAFS/XANES) and electron microscopy (SEM/HRTEM) to obtain information about the structure and surface orientation. The electrocatalytic activity of the prepared materials with respect to industrially important electrocatalytic processes – chlorine and oxygen evolution will be characterized using and common electrocatalytic techniques (CV, DEMS, impedance spectroscopy). The active sites (or their model structural elements) for these processes will be identified by combination of ex-situ XPS and in-situ X-ray absorption spectroscopy (EXAFS/XANES). The obtained data will be used to formulate general relationships between the oxide surface structure and composition and its electrocatalytic activity and selectivity. These general rules may be in the long run used for rational design of novel electrocatalysts with tailored properties.'

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