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Featured researches published by Y.V. Pivak.


ieee international conference on oxide materials for electronic engineering | 2012

Oxygen ionic transport in brownmillerite-type Ca 2 Fe 2 O 5±δ and calcium ferrite-based composites

A.L. Shaula; V.A. Kolotygin; E.N. Naumovich; J.C. Waerenborgh; Y.V. Pivak; V.V. Kharton

Oxygen ionic transport in mixed-conducting Ca2Fe2O5-δ brownmillerite was analyzed in light of potential applications in the composite materials for oxygen separation membranes and solid oxide fuel cell cathodes. The lattice defect formation and oxygen diffusion mechanisms were assessed by the computer simulations employing molecular dynamics and static lattice modeling. The most energetically favorable oxygen-vacancy location is in the octahedral layers of the brownmillerite structure, which provide a maximum contribution to the ionic migration in comparison with the structural blocks comprising iron-oxygen tetrahedra. The activation energies for the vacancy and interstitial diffusion in the tetrahedral layers, and also between the octahedral and tetrahedral sheets, are several times higher. The calculated values were found comparable to the experimental activation energy for ionic conduction in Ca2Fe2O5-δ, 147 kJ/mol, determined by the steady-state oxygen permeation measurements. The dense membranes of model composite Ca2Fe2O5-δ - Ce0.9Gd0.1O2-δ with equal weight fractions of the components (CGCF5) were sintered and characterized. No critical interdiffusion of the composite constituents, leading to their decomposition, was found by X-ray diffraction and electron microscopic analyses. The electrical conductivity of this composite, with an activation energy of 37 kJ/mol, is intermediate between two parent compounds and is dominantly p-type electronic as for Ca2Fe2O5-δ. Since the ion- and electron-conducting phases are well percolated in the composite ceramics, the oxygen permeation fluxes through CGCF5 are considerably higher than those of both constituents.


Solid State Ionics | 2006

Ionic conductivity of brownmillerite-type calcium ferrite under oxidizing conditions

A.L. Shaula; Y.V. Pivak; J.C. Waerenborgh; P. Gaczyński; Aleksey A. Yaremchenko; V.V. Kharton


Journal of Electroceramics | 2007

Oxygen permeability, stability and electrochemical behavior of \( \Pr _{2} {\text{NiO}}_{{4 + \delta }} \)-based materials

A.V. Kovalevsky; V.V. Kharton; A.A. Yaremchenko; Y.V. Pivak; E.V. Tsipis; S. O. Yakovlev; Alexey A. Markov; E.N. Naumovich; J.R. Frade


Journal of The European Ceramic Society | 2007

Stability and oxygen transport properties of Pr2NiO4+δ ceramics

A.V. Kovalevsky; V.V. Kharton; A.A. Yaremchenko; Y.V. Pivak; E.N. Naumovich; J.R. Frade


Journal of Physics and Chemistry of Solids | 2007

Oxygen non-stoichiometry and defect thermodynamics in La2Ni0.9Fe0.1O4+δ

E.V. Tsipis; E.N. Naumovich; M.V. Patrakeev; J.C. Waerenborgh; Y.V. Pivak; P. Gaczyński; V.V. Kharton


Journal of The European Ceramic Society | 2007

Phase relationships and transport in Ti-, Ce- and Zr-substituted lanthanum silicate systems

Y.V. Pivak; V.V. Kharton; Aleksey A. Yaremchenko; S. O. Yakovlev; Andrei V. Kovalevsky; J.R. Frade; F.M.B. Marques


Solid State Ionics | 2007

Oxygen ionic conductivity, Mössbauer spectra and thermal expansion of CaFe2O4 - δ

E.V. Tsipis; Y.V. Pivak; J.C. Waerenborgh; V.A. Kolotygin; A.P. Viskup; V.V. Kharton


Journal of Physics and Chemistry of Solids | 2007

Oxygen nonstoichiometry, mössbauer spectra and mixed conductivity of Pr0.5Sr0.5FeO3-δ

V.V. Kharton; M.V. Patrakeev; J.C. Waerenborgh; A.V. Kovalevsky; Y.V. Pivak; P. Gaczyński; A.A. Markov; A.A. Yaremchenko


Journal of Solid State Chemistry | 2007

Oxygen non-stoichiometry of Ln4Ni2.7Fe0.3O10−δ (Ln=La, Pr)

E.V. Tsipis; M.V. Patrakeev; J.C. Waerenborgh; Y.V. Pivak; Alexey A. Markov; P. Gaczyński; E.N. Naumovich; V.V. Kharton


Solid State Ionics | 2012

Redox behavior and transport properties of brownmillerite Ca2(Fe,M)2O5 ± δ (M = Mn, Co)

A. L. Shaula; Alexey A. Markov; E.N. Naumovich; J.C. Waerenborgh; Y.V. Pivak; V.V. Kharton

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J.C. Waerenborgh

Instituto Superior Técnico

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