Nanosized iron and mixed iron–cobalt oxides supported on activated carbon materials and their bulk analogues prepared by thermal synthesis are studied by X-rays diffraction, Mo¨ssbauer spectroscopy, magnetic measurements and temperature programmed reduction. Their catalytic behavior in methanol decomposition to H2, CO and methane is tested. Phase transformations in the metal oxides affected by the reaction medium are also investigated. Changes in the reaction mechanism of the methanol decomposition after the metal oxides deposition on the support as compared to the bulk phases are discussed
In the present work selective oxidation of methanol over the model Mo/Fe2O3 and Mo/Co(Zn) Fe2O4 syst...
In the present work selective oxidation of methanol over the model Mo/Fe2O3 and Mo/Co(Zn) Fe2O4 syst...
A CoFe2O4 inverse spinel calcined at two different temperatures (450 and 750 °C), in order to modul...
CoxFe3−xO4 iron cobaltites (1.21 < x < 2.35) have been prepared in the form of submicronic particles...
A series of CoFe2O4 nanoparticles have been prepared via co-precipitation and controlled thermal sin...
We investigated the feasibility of a two-step cycle approach for the catalytic production of hydroge...
A series of CoFe2O4 nanoparticles have been prepared via co-precipitation and controlled thermal sin...
A series of CoFe2O4 nanoparticles have been prepared via co-precipitation and controlled thermal sin...
Available data on catalytic applications of the iron-containing nanomaterials are reviewed. Main syn...
Iron–cobalt spinel oxide nanoparticles, CoxFe3−xO4 (x = 1, 2), of sizes below 10 nm have been prepar...
The aim of this master thesis was to investigate a Fe-Mo-oxide catalyst of spinel structure for meth...
We investigated the feasibility of a two-step cycle approach for the catalytic production of hydroge...
We investigated the feasibility of a two-step cycle approach for the catalytic production of hydroge...
In the present work selective oxidation of methanol over the model Mo/Fe2O3 and Mo/Co(Zn) Fe2O4 syst...
A CoFe2O4 inverse spinel calcined at two different temperatures (450 and 750 \ub0C), in order to mod...
In the present work selective oxidation of methanol over the model Mo/Fe2O3 and Mo/Co(Zn) Fe2O4 syst...
In the present work selective oxidation of methanol over the model Mo/Fe2O3 and Mo/Co(Zn) Fe2O4 syst...
A CoFe2O4 inverse spinel calcined at two different temperatures (450 and 750 °C), in order to modul...
CoxFe3−xO4 iron cobaltites (1.21 < x < 2.35) have been prepared in the form of submicronic particles...
A series of CoFe2O4 nanoparticles have been prepared via co-precipitation and controlled thermal sin...
We investigated the feasibility of a two-step cycle approach for the catalytic production of hydroge...
A series of CoFe2O4 nanoparticles have been prepared via co-precipitation and controlled thermal sin...
A series of CoFe2O4 nanoparticles have been prepared via co-precipitation and controlled thermal sin...
Available data on catalytic applications of the iron-containing nanomaterials are reviewed. Main syn...
Iron–cobalt spinel oxide nanoparticles, CoxFe3−xO4 (x = 1, 2), of sizes below 10 nm have been prepar...
The aim of this master thesis was to investigate a Fe-Mo-oxide catalyst of spinel structure for meth...
We investigated the feasibility of a two-step cycle approach for the catalytic production of hydroge...
We investigated the feasibility of a two-step cycle approach for the catalytic production of hydroge...
In the present work selective oxidation of methanol over the model Mo/Fe2O3 and Mo/Co(Zn) Fe2O4 syst...
A CoFe2O4 inverse spinel calcined at two different temperatures (450 and 750 \ub0C), in order to mod...
In the present work selective oxidation of methanol over the model Mo/Fe2O3 and Mo/Co(Zn) Fe2O4 syst...
In the present work selective oxidation of methanol over the model Mo/Fe2O3 and Mo/Co(Zn) Fe2O4 syst...
A CoFe2O4 inverse spinel calcined at two different temperatures (450 and 750 °C), in order to modul...