Computer modeling techniques, based on the density functional theory, were used to investigate the oxidation–reduction behavior of the (100) surface of iron antimony oxide, FeSbO4. We calculated the geometries and stabilities of different surface compositions with deficiency or excess of oxygen and also with two different distributions of cations, a bulk-like distribution with Fe and Sb alternation in the [001] direction and a segregated distribution with an Sb-rich surface. We found that the creation of oxygen vacancies in the surface led to the formation of surface Sb3+ species, with lone pairs pointing at the vacancy site. The electrons localized on the iron to form Fe2+ species only if there were no Sb5+ cations present to reduce prefer...
In this work, we studied the distribution of V and Sb vacancies in the rutile-type vanadium antimona...
The FeSbO4 phase on antimony(v) oxide grafted onto a silica gel surface was obtained by two differen...
The surface structure of magnetite Fe3O4(111) in contact with oxygen and water is investigated using...
Antimony segregation is a common feature in Fe-Sb mixed oxides, which have been widely applied as ca...
The initial oxidation of Fe(100) at 400 degrees C has been studied by X-ray photoelectron spectrosco...
The knowledge of surface reduction and oxidation energetics in reducible oxides is essential for the...
Greigite (Fe<sub>3</sub>S<sub>4</sub>), the sulfide counterpart of the spinel-structured oxide mater...
The renewed interest in magnetite (Fe3O4) as a major phase in different types of catalysts has led u...
Catalysts were prepared by impregnation of Fe-2(MoO4)(3) with different quantities of antimony butox...
Understanding the chemical nature and role of electrode surface states is crucial for improved elect...
Metal oxides are both corrosion products and useful materials with a wide range of applications. Two...
The structure of the mineral schafarzikite, FeSb2O4, has one-dimensional channels with walls compris...
We study the atomic oxygen adsorption on Pb(111) surface by using density-functional theory within t...
We present a first-principles study using periodic density functional theory on a water gas shift re...
The formation of an oxygen vacancy and the simultaneous re-adsorption of an oxygen atom on regular a...
In this work, we studied the distribution of V and Sb vacancies in the rutile-type vanadium antimona...
The FeSbO4 phase on antimony(v) oxide grafted onto a silica gel surface was obtained by two differen...
The surface structure of magnetite Fe3O4(111) in contact with oxygen and water is investigated using...
Antimony segregation is a common feature in Fe-Sb mixed oxides, which have been widely applied as ca...
The initial oxidation of Fe(100) at 400 degrees C has been studied by X-ray photoelectron spectrosco...
The knowledge of surface reduction and oxidation energetics in reducible oxides is essential for the...
Greigite (Fe<sub>3</sub>S<sub>4</sub>), the sulfide counterpart of the spinel-structured oxide mater...
The renewed interest in magnetite (Fe3O4) as a major phase in different types of catalysts has led u...
Catalysts were prepared by impregnation of Fe-2(MoO4)(3) with different quantities of antimony butox...
Understanding the chemical nature and role of electrode surface states is crucial for improved elect...
Metal oxides are both corrosion products and useful materials with a wide range of applications. Two...
The structure of the mineral schafarzikite, FeSb2O4, has one-dimensional channels with walls compris...
We study the atomic oxygen adsorption on Pb(111) surface by using density-functional theory within t...
We present a first-principles study using periodic density functional theory on a water gas shift re...
The formation of an oxygen vacancy and the simultaneous re-adsorption of an oxygen atom on regular a...
In this work, we studied the distribution of V and Sb vacancies in the rutile-type vanadium antimona...
The FeSbO4 phase on antimony(v) oxide grafted onto a silica gel surface was obtained by two differen...
The surface structure of magnetite Fe3O4(111) in contact with oxygen and water is investigated using...