Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where M.V. Ananyev is active.

Publication


Featured researches published by M.V. Ananyev.


Alternative Energy and Ecology | 2018

Oxygen Isotope Exchange in Proton-Conducting Oxides Based on Lanthanum Scandates

A.S. Farlenkov; A. V. Khodimchuk; N. A. Shevyrev; A. Yu. Stroeva; A. V. Fetisov; M.V. Ananyev

The method of oxygen isotope exchange with the gas phase equilibration have been used to obtain the temperature dependences of the oxygen surface exchange and diffusion coefficients with proton-conducting oxides La 1–x Sr x ScO 3– δ (x = 0; 0.04; 0.09) in the temperature range of 600−900°C at oxygen pressure 1.01 kPa. The paper determines that the diffusion and oxygen surface exchange coefficients increase with the increasing of the strontium content in the oxides. We have found out the rates of the individual stages of the oxygen exchange process on the surface of the oxides. It is shown that oxygen incorporation is rate-determining stage of the oxygen exchange on the surface of the undoped oxide, whereas for the strontium-doped oxides La 1–x Sr x ScO 3– δ (x = 0; 0.04; 0.09) with increasing of strontium concentration, the difference between the rates of dissociative adsorption and oxygen incorporation decreases so that for the oxide La 0,91 Sr 0,09 ScO 3– δ the stage of dissociative adsorption of oxygen becomes rate-determining stage. The paper analyzes the possible reasons of these differences in oxygen surface exchange kinetics. Moreover, the paper using the obtained oxygen diffusion coefficients that have been recalculated in the oxygen-ionic conductivities according to the Nernst-Einstein equation performs the contributions of the oxygen-ion and proton components of the total conductivity of oxides La 1–x Sr x ScO 3– δ (x = 0; 0.04; 0.09) in the wet reducing atmosphere (pH 2 O = 2.35 kPa, pO 2 = 10 −15 Pa). Proton transference numbers are shown to be close to unit in the temperature range of 500–600 °С at the wet hydrogen-containing reducing atmosphere.


Physical Chemistry Chemical Physics | 2016

Oxygen isotope exchange in La2NiO4±δ

M.V. Ananyev; E. S. Tropin; V.A. Eremin; A.S. Farlenkov; A. S. Smirnov; A. A. Kolchugin; N. M. Porotnikova; A.V. Khodimchuk; A.V. Berenov; E. Kh. Kurumchin


Solid State Ionics | 2016

Structural, electrical and electrochemical properties of calcium-doped lanthanum nickelate

A.А. Kolchugin; E.Yu. Pikalova; N. M. Bogdanovich; D.I. Bronin; S.M. Pikalov; S. V. Plaksin; M.V. Ananyev; V.A. Eremin


Solid State Ionics | 2014

Oxygen tracer diffusion and surface exchange kinetics in Ba0.5Sr0.5Co0.8Fe0.2O3-δ

A. Berenov; Alan Atkinson; John A. Kilner; M.V. Ananyev; V. Eremin; N. Porotnikova; A.S. Farlenkov; E. Kurumchin; Henricus J.M. Bouwmeester; E. Bucher; W. Sitte


Solid State Ionics | 2016

Influence of the synthesis method on the electrochemical properties of bilayer electrodes based on La2NiO4 + δ and LaNi0.6Fe0.4O3 − δ

E.Yu. Pikalova; N. M. Bogdanovich; A.A. Kolchugin; M.V. Ananyev; A. A. Pankratov


Fuel Cells | 2015

Particle Coarsening Influence on Oxygen Reduction in LSM–YSZ Composite Materials

A. S. Farlenkov; M.V. Ananyev; V.A. Eremin; N. M. Porotnikova; E. Kh. Kurumchin


Solid State Ionics | 2017

Oxygen isotope exchange and diffusion in LnBaCo2O6 − δ (Ln = Pr, Sm, Gd) with double perovskite structure

M.V. Ananyev; V.A. Eremin; D. S. Tsvetkov; N.M. Porotnikova; A.S. Farlenkov; A.Yu. Zuev; A.V. Fetisov; E. Kh. Kurumchin


Solid State Ionics | 2018

Validation of calcium-doped neodymium nickelates as SOFC air electrode materials

E. Pikalova; Alexandr Kolchugin; E.A. Filonova; N. M. Bogdanovich; S.M. Pikalov; M.V. Ananyev; Natalya Molchanova; A.S. Farlenkov


Journal of Solid State Electrochemistry | 2018

Oxygen isotope exchange in praseodymium nickelate

N. M. Porotnikova; A. V. Khodimchuk; M.V. Ananyev; V.A. Eremin; E. S. Tropin; A.S. Farlenkov; E.Yu. Pikalova; A.V. Fetisov


Solid State Ionics | 2017

Oxygen isotope exchange, water uptake and electrical conductivity of Ca-doped lanthanum zirconate

E.P. Antonova; A.S. Farlenkov; Evgeniy S. Tropin; V.A. Eremin; A.V. Khodimchuk; M.V. Ananyev

Collaboration


Dive into the M.V. Ananyev's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar

V.A. Eremin

Ural Federal University

View shared research outputs
Top Co-Authors

Avatar

N. M. Bogdanovich

Russian Academy of Sciences

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

N. M. Porotnikova

Russian Academy of Sciences

View shared research outputs
Top Co-Authors

Avatar

A.V. Berenov

Imperial College London

View shared research outputs
Top Co-Authors

Avatar

E. Kh. Kurumchin

Russian Academy of Sciences

View shared research outputs
Researchain Logo
Decentralizing Knowledge