en ru

LMET ISSP RAS
TOF SIMS 5

Kharton Vladislav Vadimovich

E-mail: kharton@issp.ac.ru

phone: 2-85-79

Working in:120а КРК

Position:head of the Laboratory

Work in LMET since: 2013-07-01

Scientific degree:PhD

Kharton Vladislav Vadimovich

Scientific Biography

Date and place of birth: 27 October 1967, Minsk, Belarus
Education and academic degrees:

  1. Ph.D. in Physical Chemistry, Belarus State University, Minsk, Republic of Belarus, 1993.

  2. Chemist (M.Sc. in Chemistry), Chemical Department of the Belarus State University, 1991. (Diploma with distinction; specialization: physical chemistry of solids).


Career/Employment:
2013- present: Head of the Laboratory of Materials for Electrochemical Technologies, ISSP RAS
2013- present: Invited Associate Professor, Department of Materials and Ceramic Engineering, University of Aveiro, Aveiro, Portugal
2010- 2011: Visiting researcher- Head of research team, Institute of Solid State Physics, Russian Academy of Sciences, Chernogolovka, Russia
2003- 2013: Principal Investigator, Department of Materials and Ceramic Engineering, University of Aveiro, Aveiro, Portugal
2000-2003: Auxiliary Investigator, Department of Ceramics and Glass Engineering, University of Aveiro
1996-2007: Senior Researcher, Institute of Physicochemical Problems of the Belarus State University (IPCP BSU), Minsk, Belarus
1993-1996: Researcher, IPCP BSU
1991-1993: Junior Researcher, IPCP BSU
1984-1991: student, Belarus State University


Publications:

  • Number of papers published in international SCI journals: 334
    including reviews: 12

  • Number of papers in refereed national journals, proceedings of international conferences and book chapters: 52

  • Number of communications to scientific meetings: >100

  • Books and textbooks: 5

  • Patents: 4




Citation (according to ISI Web of Knowledge, December 2016)
Total number of citations > >9400
Average citation per paper 27.8
h-index 48

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Awards and academic status


  • 2019 - 2nd prize at the contest of scientific works of Institute of Solid State Physics RAS (2019) in nomination "Physical material science"

  • 2013 – Grant of the Government of the Russian Federation for support of research projects implemented under the supervision of world-leading scientists at Russian institutions of higher learning, research organizations of the governmental academies of sciences and governmental research centers of the Russian Federation (protocol No DL-13/16pr of 22.04.2013)

  • 2004 – Portuguese Science Foundation prize for Scientific Excellence (“Est?mulo ? Excel?ncia”, FCT, Minist?rio da Ci?ncia, Tecnologia e Ensino Superior, Portugal)

  • 2015 – “Certificate of Outstanding Contribution in Reviewing”, Journal of Solid State Chemistry (Elsevier)

  • 2015 – “Certificate of Outstanding Contribution in Reviewing”, Solid State Ionics (Elsevier)

  • 2015 – “Certificate of Outstanding Contribution in Reviewing”, Materials Letters (Elsevier)

  • 2013 – “Certificate of Excellence in Reviewing”, Solid State Ionics (Elsevier)

  • 2011 – “Top Reviewer in 2011”, Materials Letters (Elsevier)

  • 2009 – “Top Reviewer 2009”, Materials Letters (Elsevier)

  • 2005 – Prize “Referee of the Year 2004” of the Journal of Solid State Electrochemistry (Springer-Verlag)

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Scientific intersts

Solid oxide fuel cells, ceramic membranes, high-temperature electrochemistry and chemistry of solids, electrocatalysis, mixed ionic-electronic conductors, solid electrolytes, modelling of ionic and ambipolar transport processes, ceramic technologies, oxygen and hydrogen separation, solid-state electrochemical sensors, nanostructured oxide and cermet materials, proton conductors, conversion of light hydrocarbons and biogas, corrosion of oxide materials, glass-ceramics for electrochemical applications, electrolysis of steam and carbon dioxide.

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Commitments, services and fellowships

Editorial activity:

  • 2017-present: Editor of Materials Letters (Elsevier)

  • 2007-present: Topical Editor of the Journal of Solid State Electrochemistry (Springer-Verlag)

  • 2010-present: Regional Editor of the Recent Patents on Materials Science journal (Bentham Science Publ.)

  • 2016-present: Member of the advisory board of Russian Journal of Electrochemistry (Russian Academy of Sciences / Pleiades Publ. / Springer-Verlag)

  • 2014-present: Member of the editorial board of the International Journal of Membrane Science and Technology (Cosmos Scholars Publ.)

  • 2014-present: Member of the editorial advisory board of the Open Physics Journal (Bentham Science Publ.)

  • 2011-present: Member of the international advisory board of Results in Physics journal (Elsevier)

  • 2011-present: Member of the editorial board of Recent Patents on Catalysis journal (Bentham Science Publ.)

  • 2008-present: Member of the editorial board of The Open Electrochemistry Journal (Bentham Science Publ.)

  • 2007-present: Member of the editorial board of “Processing and Application of Ceramics” journal (University of Novi Sad, Serbia)

  • 2007-2013: Member of the editorial advisory board of The Open Condensed Matter Physics Journal (Bentham Science Publ.)

  • 2006-present: Member of the editorial board of Materials Letters (Elsevier)

  • 2005-present: Member of the editorial board of the Journal of Solid State Electrochemistry (Springer-Verlag)

  • Guest co-editor of the special issue of Journal of Solid State Electrochemistry: “Methodological Aspects of Electrochemical Science and Technology” (issue 5, volume 15, 2011)

  • Guest editor of the special issue of Journal of Solid State Electrochemistry: "Oxygen Ionic and Mixed Conductors: Recent Developments" (issue 8, volume 10, 2006)

  • Guest co-editor of the special issue of Journal of Solid State Electrochemistry: Proceedings of the OSSEP Workshop "Ionic and Mixed Conductors: Methods and Processes" (issue 9, volume 8, 2004)


Educational activity:
Scientific advising of PhD theses (defended) 6
Scientific supervision of student diploma projects (defended) 12
Scientific supervision of MSc theses (defended) 4
Supervising of postdoctoral fellowships (completed) 12
Supervising of postgraduate and other student fellowships (completed) >10


Reviewer/evaluator activities:

  1. Evaluation of scientific projects, applications and reports for the US Department of Energy, ACS Petroleum Research Fund, Academic Research Fund of the National University of Singapore, Australian Research Council, Austrian Science Fund, Council of Canadian Academies, Academia Europaea, Deutsche Forschungsgemeinschaft (German Research Foundation - DFG), EU FP7 Marie Curie Fellowship Program, German Aerospace Agency (DLR), Research Council of Norway, Swiss National Science Foundation, Sao Paulo Research Foundation (Brazil), Czech Science Foundation, Grant Agency of the Academy of Sciences of the Czech Republic, EVAL-INCO, ERAfrica (EC), INTAS (EC)

  2. Evaluation of book projects: Wiley-VCH, John Wiley&Sons, Springer-Verlag, Chapman&Hall/ CRC Press, Elsevier

  3. Refereeing of scientific papers for over 50 international journals: Science, Advanced Materials, Advanced Functional Materials, Advanced Energy Materials, Angewandte Chemie, etc.

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Selected publications

2024

  1. PDFE.V. Tsipis, D.V. Matveev, A.U. Sharafutdinov, D.V. Yalovenko, A.V. Samoilov, Yu.S. Fedotov, M.S. Dyakina, D.V. Zhigacheva, D.A. Agarkov, S.I. Bredikhin, V.V. Kharton Performance of SOFCs using model waste gases: a case study Fuel vol. 358, 130129, doi 10.1016/j.fuel.2023.130129 2024

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2023

  1. PDFE.V. Tsipis, D.A. Agarkov, Yu.A. Borisov, S.V. Kiseleva, A.B. Tarasenko, S.I. Bredikhin, V.V. Kharton Waste gas utilization potential for solid oxide fuel cells: a brief review Renewable and Sustainable Energy Reviews 188, 113880, doi 10.1016/j.rser.2023.113880 2023

  2. PDFE.V. Tsipis, D.V. Zhigacheva, A.O. Zhigachev, O.F. Shakhlevich, S.I. Bredikhin, V.V. Kharton Electrochemical behavior of perovskite-type Ce1?xCaxVO3 under reducing conditions Journal of Solid State Electrochemistry 2023

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2021

  1. PDFE. V. Tsipis, E. N. Naumovich, M. V. Patrakeev, A. A. Yaremchenko, A. V. Kovalevsky, J. C. Waerenborgh & V. V. Kharton Ionic transport in (La,Sr)CoO3-? ceramics Journal of Solid State Electrochemistry 25, p.2777–2791 2021

  2. PDFD.V. Matveev, Yu.S. Fedotov, A.I. Ivanov, E.A. Agarkova, S.I. Bredikhin Optimization of Contact Cathode Composition Based on ECS Transactions vol. 103, iss. 1, pp. 1453-1460, doi 10.1149/10301.1453ecst 2021

  3. PDFG.M. Korableva, D.A. Agarkov, I.N. Burmistrov, E.E. Lomonova, A.A. Maksimov, A.V. Samoilov, A.A. Solovyev, I.I. Tartakovskii, V.V. Kharton, and S.I. Bredikhin Application of High-temperature Raman Spectroscopy (RS) for Studies of Electrochemical Processes in Solid Oxide Fuel Cells (SOFCs) and Functional Properties of their Components ECS Transactions vol. 103, iss. 1, pp. 1301-1317, doi 10.1149/10301.1301ecst 2021

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2020

  1. E.V. Tsipis, M.V. Patrakeev, P.V. Anikina, E.N. Naumovich, V.V. Kharton Redox behavior and ionic conductivity of Al-doped Sr3LaFe3O10?? Materials Letters Vol. 265. – P. 127425 2020

  2. PDFE.V. Tsipis, I.N. Burmistrov, D.A. Agarkov, D.V. Matveev, V.V. Kharton, S.I. Bredikhin Formation and Electrochemical Activity of Nanostructured Anodes of Solid Oxide Fuel Cells in Hydrogen-Containing Atmospheres Nanotechnologies in Russia vol. 15, no. 3-6, pp. 356-362, doi 10.1134/S1995078020030143 2020

    PDFЕ.В. Ципис, И.Н. Бурмистров, Д.А. Агарков, Д.В. Матвеев, В.В. Хартон, С.И. Бредихин Формирование и электрохимическая активность наноструктурированных анодов твердооксидных топливных элементов в водород-содержащих атмосферах Российские нанотехнологии том. 15, №3, с. 368-375, doi 10.1134/S1992722320030140 2020

  3. Колотыгин В.А., Иванов А.И., Матвеев Д.В., Бредихин С.И., Хартон В.В. Электрохимическое поведение анодов твердооксидных топливных элементов на основе (Fe,Ni)OX в метан-содержащих атмосферах Электрохимия Т. 56, № 2, С. 158-166 2020

  4. Иванов А.И., Зверькова И.И., Ципис Е.В., Бредихин С.И., Хартон В.В. Стабильность и функциональные свойства флюоритоподобных Ce0.6–XLa0.4PrXO2–d как компонентов электродов твердооксидных топливных элементов Электрохимия Т. 56, № 2, С. 149-157 2020

  5. Колотыгин В.А., Вискуп А.П., Пивак Е.В., Хартон В.В. Смешанная ионно-электронная проводимость перовскитоподобных твердых растворов Ba1–XSrXFe1–YTiYO3–d и BaTi0.5Fe0.5–ZCeZO3–d Электрохимия Т. 56, № 2, С. 119-126 2020

  6. PDFG.M. Eliseeva, I.N. Burmistrov, D.A. Agarkov, A.A. Gamova, I.V. Ionov, M.N. Levin, A.A. Solovyev, I.I. Tartakovskii, V.V. Kharton, S.I. Bredikhin In-situ Raman spectroscopy studies of oxygen spillover at solid oxide fuel cell anodes Chemical Problems no. 1(18), pp. 9-19, doi 10.32737/2221-8688-2020-1-9-19 2020

  7. 2019

    1. V.A. Kolotygin, E.V. Tsipis, M.V. Patrakeev, J.C. Waerenborgh and V.V. Kharton Time degradation of electronic and ionic transport in perovskite-like La0.5Ca0.5FeO3-d Materials Letters vol. 239, pp. 167-171 2019

    2. PDFV.A. Kolotygin, A.I. Ivanov, N.B. Kostretsova, V.V. Kharton Perovskite-like(La0.75Ca0.25)0.95Cr1-xFexO3-d as potential electrode materials for symmetric solid oxide fuel cells Chemical Problems on review 2019

    3. N.V. Demeneva, O.V. Kononenko, D.V. Matveev, V.V. Kharton, S.I. Bredihin Composition-gradient protective coatings for solid oxide fuel cell interconnectors Materials Letters vol. 240, pp. 201-204 2019

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    2018

    1. PDFA. Allu, A. Gaddam, S. Ganisetti, S. Balaji, R. Siegel, G. Mather, M. Fabian, M. Pascual, N. Ditaranto, W. Milius, J. Senker, D. Agarkov, V. Kharton, J. Ferreira Structure and Crystallization of Alkaline-Earth Aluminosilicate Glasses: Prevention of the Alumina Avoidance Principle Journal of Physical Chemistry B 22(17), pp. 4737-4747 2018

    2. O.V. Merkulov, E.N. Naumovich, M.V. Patrakeev, A.A. Markov, E.V. Shalaeva, V.V. Kharton, E.V. Tsipis, J.C. Waerenborgh, I.A. Leonidov, V.L. Kozhevnikov Defect formation, ordering, and transport in SrFe1–xSixO3–d (x = 0.05–0.20) Journal of Solid State Electrochemistry 2018, v. 22, iss. 3, pp. 727-737 2018

    3. O.V. Merkulov, E.N. Naumovich, M.V. Patrakeev, A.A. Markov, E.V. Shalaeva, V.V. Kharton, E.V. Tsipis, J.C. Waerenborgh, I.A. Leonidov and V.L. Kozhevnikov Defect formation, ordering and transport in SrFe1–xSixO3–d (x = 0.05 – 0.20) Russian Journal of Electrochemistry vol. 22, pp. 727-737 2018

    4. E.V. Tsipis, E.N. Naumovich, M.V. Patrakeev and V.V. Kharton Oxygen intercalation in Ruddlesden-Popper type Sr3LaFe3O10-d Materials Letters vol. 218, pp. 325-328 2018

    5. E.V. Tsipis, E.N. Naumovich, M.V. Patrakeev, V.V. Kharton Oxygen intercalation in Ruddlesden-Popper type Sr3LaFe3O10-d Materials Letters V.218, pp. 325-328 2018

    6. PDFA.I.Ivanov, V.A.Kolotygin, E.V.Tsipis, S.I.Bredikhin, V.V.Kharton Electrical Conductivity, Thermal Expansion and Electrochemical Properties of Perovskites PrBaFe2–xNixO5+d Russian Journal of Electrochemistry Vol. 54, No. 6, pp. 533-540 2018

      PDFА.И. Иванов, В.А. Колотыгин, Е.В. Ципис, С.И. Бредихин, В.В. Хартон Электропроводность, термическое расширение и электрохимические свойства перовскитов PrBaFe2-xNixO5-d Электрохимия Т. 54, № 6, с. 615-622 2018

    7. PDFV.A.Kolotygin, E.V.Tsipis, A.A.Markov, M.V.Patrakeev, J.C.Waerenborgh, A.L.Shaula, V.V.Kharton Transport and Electrochemical Properties of SrFe(Al,Mo)O3-d Russian Journal of Electrochemistry Vol. 54, No. 6, pp. 514-526 2018

      В.А. Колотыгин, Е.В. Ципис, А.А. Марков, М.В. Патракеев, Ж.К. Варенборх, А.Л. Шаула, В.В. Хартон Транспортные и электрохимические свойства SrFe(Al,Mo)O3-d Электрохимия Т. 54, № 6, с. 593-607 2018

    8. PDFV.A.Kolotygin, V.A.Noskova, S.I.Bredikhin, V.V.Kharton Redox Behavior and Transport Properties of Composites Based on (Fe,Ni)3O4+d for Anodes of Solid Oxide Fuel Cells Russian Journal of Electrochemistry Vol. 54, No. 6, pp. 506-513 2018

      PDFВ.А. Колотыгин, В.А. Носкова, С.И. Бредихин, В.В. Хартон Окислительно-восстановительное поведение и транспортные свойства композитов на основе (Fe,Ni)3O4+d для анодов твердооксидных топливных элементов Электрохимия Т. 54, № 6, с. 584-592 2018

    9. PDFA.I.Ivanov, V.A.Kolotygin, M.V.Patrakeev, A.A.Markov, S.I.Bredikhin, V.V.Kharton Oxygen Nonstoichiometry and Transport Properties of Mixed-Conducting Ce0.6–xLa0.4PrxO2–d Russian Journal of Electrochemistry Vol. 54, No. 6, pp. 486-492 2018

      PDFА.И.Иванов, В.А.Колотыгин, М.В.Патракеев, А.А.Марков, С.И.Бредихин, В.В.Хартон Кислородная нестехиометрия и транспортные свойства смешанных проводников Ce0.6-xLa0.4PrxO2-d Электрохимия Т. 54, № 6, с. 561-569 2018

    10. PDFD.A. Agarkov, I.N. Burmistrov, F.M. Tsybrov, I.I. Tartakovskii, V.V. Kharton and S.I. Bredikhin In-situ Raman spectroscopy analysis of the interface between ceria-containing SOFC anode and stabilized zirconia electrolyte Solid State Ionics Vol. 319C, pp. 125-129 2018

    11. PDFС.И. Бредихин, Д.А. Агарков, А.С. Аронин, И.Н. Бурмистров, Д.В. Матвеев, Ф.М. Цыбров, В.В. Хартон Особенности переноса заряда в композиционном аноде ТОТЭ: электронно-микроскопические и "in-situ" исследования методом спектроскопии комбинационного рассеяния света Альтернативная энергетика и экология №4-6, с.70-81 2018

    12. PDFS.I. Bredikhin, D.A. Agarkov, A.S. Aronin, I.N. Burmistrov, D.V. Matveev, V.V. Kharton Ion Transfer in Ni-containing Composite Anodes of Solid Oxide Fuel Cells: a Microstructural Study Materials letters Vol. 216, p. 193-195 2018

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    2017

    1. E.V. Tsipis, J.C. Waerenborgh and V.V. Kharton Grain-boundary states in solid oxide electrolyte ceramics processed using iron oxide sintering aids: a M?ssbauer spectroscopy study Journal of Solid State Electrochemistry vol. 21, pp. 2965-2974 2017

    2. PDFAllu A., Balaji S., Tulyaganov D., Mather G., Margit F., Pascual M., Siegel R., Milius W., Senker J., Agarkov D., Kharton V., Ferreira J. Understanding the Formation of CaAl2Si2O8 in Melilite Based Glass-Ceramics: Combined Diffraction and Spectroscopic Studies ACS Omega Vol. 2, 6233-6243 2017

    3. PDFD.A. Agarkov, I.N. Burmistrov, F.M. Tsybrov, I.I. Tartakovskii, V.V. Kharton, S.I. Bredikhin In-situ Raman spectroscopy analysis of the interfaces between Ni-based SOFC anodes and stabilized zirconia electrolyte Solid State Ionics Vol. 302, pp. 133-137 2017

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    2016

    1. N.V. Demeneva, D.V. Matveev, V.V. Kharton, S.I. Bredikhin Regularities of high-temperature oxidation of current collectors of solid oxide fuel cells due to diffusion processes in subsurface regions Russian Journal of Electrochemistry vol. 52, iss. 7, pp. 678-684 2016

    2. В.А. Колотыгин, А.И. Иванов, С.И. Бредихин, В.В. Хартон Электрофизические и термомеханические свойства перовскитов La0.5A0.5Mn0.5Ti0.5O3-d (A=Ca, Sr, Ba) для анодов топливных элементов: влияние радиуса щелочноземельного катиона Электрохимия Т. 52, № 7, с. 697-703 2016

      PDFV.A. Kolotygin, A.I. Ivanov, S.I. Bredikhin, V.V. Kharton Electrophysical and Thermomechanical Properties of Perovskites La0.5A0.5Mn0.5Ti0.5O3-d (A = Ca, Sr, Ba) Used as Fuel Cell Anodes: the Effect of Radius of Alkali-Earth Cation Russian Journal of Electrochemistry Vol. 52, No. 7, pp. 622-627 2016

    3. В.А. Колотыгин, Е.В. Ципис, М.В. Патракеев, А.И. Иванов, В.В. Хартон Стабильность, смешанная проводимость и термомеханические свойства перовскитных материалов на основе La0.5A0.5Mn0.5Ti0.5O3-d, La0.5Ba0.5Ti0.5Fe0.5O3-d и (La0.5А0.5)0.95Cr0.5Fe0.5O3-d (A = Ca, Ba) Электрохимия Т. 52, № 7, с. 704-717 2016

      PDFV.A. Kolotygin, E.V. Tsipis, M.V. Patrakeev, A.I. Ivanov, V.V. Kharton Stability, Mixed Conductivity, and Thermomechanical Properties of Perovskite Materials for Fuel Cell Electrodes Based on La0.5A0.5Mn0.5Ti0.5O3-d, La0.5Ba0.5Ti0.5Fe0.5O3-d, and (La0.5А0.5)0.95Cr0.5Fe0. Russian Journal of Electrochemistry Vol. 52, No. 7, pp. 628-641 2016

    4. PDFD.A. Agarkov, I.N. Burmistrov, F.M. Tsybrov, I.I. Tartakovskii, V.V. Kharton, S.I. Bredikhin Kinetics of NiO reduction and morphological changes in composite anodes of solid oxide fuel cells: estimate using Raman scattering technique Russian Journal of Electrochemistry Vol. 52, No. 7, pp. 600-605 2016

      PDFД.А. Агарков, И.Н. Бурмистров, Ф.М. Цыбров, И.И. Тартаковский, В.В. Хартон, С.И. Бредихин Кинетика восстановления и морфологические изменения Ni в композиционых анодах ТОТЭ: оценка методом комбинационного рассеяния света Электрохимия Т. 52, № 7, с. 673-679 2016

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    2015

    1. PDFN. Demeneva, D. Matveev, V. Kharton, and S. Bredikhin Interdiffusion and Charge Transport Across Surface-Modified Current Collectors in Planar SOFCs ECS Transactions Vol.68, iss.1, pp.1707-1713 2015

    2. А.А. Reddy, D.U. Tulyaganov, V.V. Kharton, J.M. F. Ferreira Development of bilayer glass-ceramic SOFC sealants via optimizing the chemical composition of glasses—a review Journal of Solid State Electrochemistry 2015
    3. E.V. Shalaeva, M.V. Patrakeev, A.A. Markov, A.P. Tyutyunnik, A.M. Murzakaev, V.V. Kharton, E.V. Tsipis, J.C. Waerenborgh, I.A. Leonidov, IA Ion transport in dual-phase SrFe1-xТаxO3-? (x = 0.03 - 0.10): effects of redox cycling J. Solid State Electrochemisrty vol. 19, iss.3, pp. 841-849 2015

    4. D. Ramasamy, A.L. Shaula, A. Gomez-Herrero, V.V. Kharton, D.P Fagg Oxygen permeability of mixed-conducting Ce0.8Tb0.2O2-? membranes: effects of ceramic microstructure and sintering temperature J. Membrane Science vol. 475, pp. 414 - 424 2015

    5. PDFI.N. Burmistrov, D.A. Agarkov, I.I. Tartakovskii, V.V. Kharton, S.I. Bredikhin Performance Optimization of Cermet SOFC Anodes: An Evaluation of Nanostructured Ni ECS Transactions Vol. 68, Iss. 1, pp. 1265-1274 2015

    6. PDFD.A. Agarkov, I.N. Burmistrov, F.M. Tsybrov, I.I. Tartakovskii, V.V. Kharton, S.I. Bredikhin, V.V. Kveder Analysis of Interfacial Processes at the SOFC Electrodes by in-situ Raman Spectroscopy ECS Transactions Vol. 68, Iss. 1, pp. 2093-2103 2015

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    2014

    1. Артемов В.Г., Курицына И.Е., Лебедев С.П., Командин Г., Капралов П.О., Спектор И.Е., Хартон В.В., Бредихин С.И., Волков А.А. Анализ электрических свойств монокристаллов ZrO2-Y2O3 методами терагерцовой-ИК и импедансной спектроскопии Электрохимия т. 50, №7, сс. 690-693 2014

    2. Ю.С. Федотов, Д.Б. Смирнов, П.А. Воробьев, В.В. Хартон, С.И. Бредихин Макроскопическое моделирование процессов переноса в планарных твердооксидных топливных элементах: оценка критических факторов Международный научный журнал «Альтернативная энергетика и экология» №20(160), с.26-37 2014

    3. A.A. Reddy, A. Goel, D.U. Tulyaganov, M. Sardo, L. Mafra, M.J. Pascual, V.V. Kharton, E.V. Tsipis, V.A. Kolotygin, J.M.F. Ferreira Thermal and Mechanical Stability of Lanthanide-Containing Glass-Ceramic Sealants for Solid Oxide Fuel Cells Journal of Materials Chemistry A 2 (2014) 1834 2014

    4. A.A. Reddy, D.U. Tulyaganov, G.C. Mather, M.J. Pascual, V.V. Kharton, S.I. Bredikhin, V.A. Kolotygin, J.M.F. Ferreira Effect of Srontium-to-Calcium Ratio on the Structure, Crystallization Behaviour and Functional Properties of Diopside-Based Glasses International Journal of Hydrogen Energy 39 (2014) 3552 2014

    5. N.E. Volkova, V.A. Kolotygin, L.Ya. Gavrilova, V.V. Kharton, V.A. Cherepanov Nonstoichiometry, Thermal Expansion and Oxygen Permeability of SmBaCo2-xCuxO6-d Solid State Ionics 260 (2014) 15 2014

    6. A.A. Yaremchenko, V.V. Kharton, V.A. Kolotygin, M.V. Patrakeev, E.V. Tsipis, J.C. Waerenborgh Mixed Conductivity, Thermochemical Expansion and Electrochemical Activity of Fe-Substituted (La,Sr)(Cr,Mg)O3-? for Solid Oxide Fuel Cell Anodes J. Power Sources 249 (2014) 483 2014

    7. I. Kuritsyna, V. Sinitsyn, A. Melnikov, Yu. Fedotov, E. Tsipis, A. Viskup, S. Bredikhin and V.Kharton Oxygen exchange, thermochemical expansion and cathodic behavior of perovskite-like Sr0.7Ce0.3MnO3-d Solid State Ionics vol. 262, pp. 349-353 2014

    8. V.G. Artemov, I.E. Kuritsyna, S.P. Lebedev, G.A. Komandin, P.O. Kapralov, I.E. Spektor, V.V. Kharton, S.I. Bredikhin, A.A. Volkov Analysis of electric properties of ZrO2-Y2O3 single crystals using teraherz IR and impedance spectroscopy techniques Russian Journal of Electrochemistry V. 50, iss. 7, pp. 690-693 2014

    9. I.Е. Kuritsyna, V.V. Sinitsyn, Y.S. Fedotov, S.I. Bredikhin, E.V. Tsipis, V.V. Kharton Stability and functional properties of Sr0.7Ce0.3MnO3-d as cathode material for solid oxide fuel cells Russian Journal of Electrochemistry V. 50, iss. 8, pp. 713-718 2014

      И.E. Курицына, В.В. Синицын, Ю.С. Федотов, С.И. Бредихин, E.В. Ципис, В.В. Хартон Стабильность и функциональные свойства Sr0.7Ce0.3Мn0.3 как катодного материала твердооксидных топливных элементв Электрохимия том 50, №8, 713-718 2014

    10. PDFA.I. Ivanov, D.A. Agarkov, I.N. Burmistrov, E.A. Kudrenko, S.I. Bredikhin amd V.V. Kharton Synthesis and Properties of Fuel Cell Anodes Based on (La0.5+xSr0.5-x)1-yMn0.5Ti0.5O3-d (x=0-0.25, y=0-0.03) Russian Journal of Electrochemistry Vol. 50, No. 8, 730-736 2014

      PDFА.И. Иванов, Д.А. Агарков, И.H. Бурмистров, E.А. Кудренко, С.И. Бредихин, В.В. Хартон Синтез и свойства анодов топливных элементов на основе (La0.5+xSr0.5)1-yMn0.5Ti0.5O3-d (x=0-0.25, y=0-0.03) Электрохимия том 50, №8, 814-820 2014

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    2013

    1. M.T. Dunstan, A.F. Pavan, V.V. Kharton, M. Avdeev, J.A. Kimpton, V.A. Kolotygin, E.V. Tsipis and C.D. Ling Phase behavior and mixed ionic–electronic conductivity of Ba4Sb2O9 Solid State Ionics vol. 235, pp. 1-7 2013

    2. V.A. Kolotygin, E.V. Tsipis, M.F. Lu, Y.V. Pivak, S.N. Yarmolenko, S.I. Bredikhin and V.V. Kharton Functional properties of SOFC anode materials based on LaCrO3, La(Ti,Mn)O3 and Sr(Nb,Mn)O3 perovskites: a comparative analysis Solid State Ionics V. 251, pp. 28-33 2013

    3. A.A. Reddy, D.U. Tulyaganov, M.J. Pascual, V.V. Kharton, E.V. Tsipis, V.A. Kolotygin and J.M.F. Ferreira SrO–containing diopside glass–ceramic sealants for solid oxide fuel cells: mechanical reliability and thermal shock resistance Fuel Cells V. 13, iss. 5, pp. 689-694 2013

    4. A.L. Shaula, V.A. Kolotygin, E.N. Naumovich, Y.V. Pivak and V.V. Kharton Oxygen ionic transport in brownmillerite-type Ca2Fe2O5-? and calcium ferrite-based composite membranes Solid State Phenomena vol. 200, pp. 286-292 2013

    5. A.A. Reddy, D.U. Tulyaganov, M.J. Pascual, V.V. Kharton, E.V. Tsipis, V.A. Kolotygin and J.M.F. Ferreira Diopside–Ba disilicate glass–ceramic sealants for SOFCs: enhanced adhesion and thermal stability by Sr for Ca substitution, International Journal of Hydrogen Energy International Journal of Hydrogen Energy vol. 38, pp. 3073-3086 2013

    6. C.D. Ling, S. Schmid, P.E.R. Blanchard, V. Petricek, G.J. McIntyre, N. Sharma, A. Maljuk, A.A. Yaremchenko, V.V. Kharton, M. Gutmann and R.L. Withers A (3+3)-dimensional “hypercubic” oxide-ionic conductor: Type II Bi2O3–Nb2O5 Journal of the American Chemical Society vol. 135, pp. 6477-6484 2013

    7. A.A. Reddy, D.U. Tulyaganov, A. Goel, M. Sardo, P.V. Wiper, M.J. Pascual, V.V. Kharton, V.A. Kolotygin, E.V. Tsipis, L. Mafra and J.M.F. Ferreira Melilite glass–ceramic sealants for solid oxide fuel cells: effects of ZrO2 additions assessed by microscopy, diffraction and solid-state NMR Journal of Materials Chemistry A vol. 1, pp. 6471-6480 2013

    8. M.V. Patrakeev, A.A. Markov, E.V. Shalaeva, A.P. Tyutyunnik, E.V. Tsipis, J.C. Waerenborgh, V.V. Kharton, I.A. Leonidov and V.L. Kozhevnikov Phase separation-promoted ion conduction in SrFe0.67Та0.33O3-? ceramics Solid State Ionics vol. 244, pp. 17-22 2013

    9. D.U. Tulyaganov, A.A. Reddy, V.V. Kharton and J.M.F. Ferreira Aluminosilicate-based sealants for SOFCs and other electrochemical applications ? A brief review Journal of Power Sources vol. 242, pp. 486-502 2013

    10. J.C. Waerenborgh, E.V. Tsipis, J.E. Auckett, C.D. Ling and V.V. Kharton Magnetic structure of Sr2Fe2O5 brownmillerite by single-crystal M?ssbauer spectroscopy Journal of Solid State Chemistry vol. 205, pp. 5-9 2013

    11. N. E. Volkova, L. Ya. Gavrilova, V. A. Cherepanov, T. V. Aksenova, V.A. Kolotygin and V.V. Kharton Synthesis, crystal structure and properties of SmBaCo2-xFexO5+d Journal of Solid State Chemistry vol. 204, pp. 219-223 2013

    12. V.V. Kharton and E.V. Tsipis Reference electrodes for solid-electrolyte devices “Handbook of Reference Electrodes”, Eds. G. Inzelt, A. Lewenstam and F. Scholz Springer-Verlag, Berlin-Heidelberg, 2013, pp. 243-278 2013

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    2012

    1. PDFV.A. Kolotygin, E.V. Tsipis, A.I. Ivanov, Y.A. Fedotov, I.N. Burmistrov, D.A. Agarkov, V.V. Sinitsyn, S.I. Bredikhin, V.V. Kharton Electrical, electrochemical, and thermomechanical properties of perovskite-type (La1-xSrx)1-yMn0.5Ti0.5O3-d (x=0.15–0.75,y=0–0.05) Journal of Solid State Electrochemistry Vol. 16, No. 7, pp. 2335-2348 2012

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    2011

    1. V.A.Kolotygin, E.V.Tsipis, A.L.Shaula, E.N.Naumovich , J.R.Frade, S.I.Bredikhin and V.V.Kharton Transport and electrode properties of perovskite-type (La0.75Sr0.25)0.95Mn0.5Cr0.5TixO3-d (x=0 - 0.5) J. Solid State Electrochem. Volume 15, Number 2, Pages 313-327 2011

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    Participation in grants

    2017

    1. «Разработка научно обоснованных путей оптимизации мощностных и массогабаритных характеристик батарей ТОТЭ планарной конструкции и создание топливного процессора для высокоэффективных транспортных и стационарных энергоустановок» РНФ, 17-79-30071 2017-2020, 128 млн.руб., (2017)

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    2014

    1. «Разработка лабораторной масштабируемой технологии изготовления ТОТЭ планарной конструкции и концепции создания на их базе энергетических установок различного назначения и структуры, включая гибридные, с изготовлением и испытаниями маломасштабного экспериментального образца энергоустановки мощностью 500 - 2000 Вт» Минобрнауки РФ, соглашение 14.610.21.0007 2014-2016, 164.6 млн.руб., (2014)
    2. «Разработка фундаментальных основ новых технологий электродных материалов и электролитов с междоузельными механизмами кислород-ионного переноса для среднетемпературных твердооксидных топливных элементов» РФФИ, 14-29-04042 2014-2016, 1.5 млн.руб., (2014)

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    2013

    1. «Разработка методов изготовления и исследование характеристик тонкопленочных мембрано-электродных блоков для ТОТЭ» РФФИ, 13-03-12408 офи_м2 2013-2016, 2.5 млн.руб., (2013)
    2. «Создание научных основ новых типов ТОТЭ с размещением блока конверсии в едином модуле с целью перевода топливного элемента с водородного питания на природный газ и на штатное пропан-бутановое топливо» РФФИ, 13-03-12409 офи_м2 2013-2016, 2.5 млн.руб., (2013)

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    2010

    1. «Проведение поисковых научно-исследовательских работ в области получения и исследования новых функциональных материалов и структур для среднетемпературных твердооксидных топливных элементов» Минобрнауки РФ, ГК 5214 2010, млн.руб., (2010)