Диссертация (1145446), страница 44
Текст из файла (страница 44)
Chromium poisoning of perovskite cathodes by the ODS alloyCr5Fe1Y2O3 and the high chromium ferritic steel Crofer22APU // J. Electrochem.Soc. – 2006. – V. 153. – P. A765-A773.2. Konysheva E., Laatsch J., Wessel E., Tietz F., Christiansen N., Singheiser L.,Hilpert K. Influence of different perovskite interlayers on the electricalconductivity between La0.65Sr0.3MnO3 and Fe/Cr-based steels // Solid State Ionics.– 2006. – V. 177. – P.
923-930.3. Konysheva E., Seeling U., Besmehn A., Singheiser L., Hilpert K. Chromiumvaporization of the ferritic steel Crofer22APU and ODS Cr5Fe1Y2O3 alloy // J.Mater. Sci. – 2007. – V. 42. – P. 5778-5784.4. Konysheva E., Mertens J., Penkalla H., Singheiser L., Hilpert K. Chromiumpoisoning of the porous composite cathode: effect of cathode thickness and currentdensity // J. Electrochem. Soc.
– 2007. – V. 154. –P. B1252-B1264.5. Konysheva E., Irvine J.T.S. Effect of minor additions of CeO2 on conductivity ofperovskites with mixed ionic-electronic conductivity // ECS Tran. – 2008. – V. 13.– P. 115-122.6. Konysheva E., Irvine J.T.S., Besmehn A. Electrical conductivity and structure ofsolid solutions formed in the La0.8Sr0.2MnO3 - La0.95Ni0.6Fe0.4O3 system // SolidState Ionics. – 2008. – V.
179. – P. 1432-1435.7. Konysheva E., Irvine J.T.S. Evolution of conductivity, structure andthermochemical stability of lanthanum manganese iron nickelate perovskites // J.Mat. Chem. – 2008. – V. 18. – P. 5147-5154.2698. Konysheva E., Irvine J.T.S., Besmehn A. Crystal structure, thermochemicalstability, electrical and magnetic properties of the (100-x)La0.8Sr0.2MnO3-xCeO2composites // Solid State Ionics. – 2009. – V. 180. – P.
778-783.9. Konysheva E., Irvine J.T.S. Electronic conductivity of modified La0.95Ni0.6Fe0.4O3-perovskite // J. Power Sources. – 2009. – V.193. – P. 175-179.10. Konysheva E., Irvine J.T.S. Thermochemical and structural stability of A- andB-site substituted perovskites in hydrogen containing atmosphere // Chem. Mater.– 2009. – V. 21. – P. 1514-1523.11. Konysheva E., Suard E., Irvine J.T.S. Effect of oxygen nonstoichiometry andoxidation state of transition elements on high-temperature phase transition inA–site deficient La0.95Ni0.6Fe0.4O3 perovskite // Chem.
Mater. – 2009. – V. 21. – P.5307-5318.12. Конышева Е.Ю., Бонаккорсо А.Д., Ирвайн Дж.Т.С. Электрохимическиехарактеристикикатодовнаосновеперовскитов,модифицированныхдиоксидом церия // Электрохимия. – 2010. – T. 46. – C. 857-863.13. Konysheva E., Francis S.M., Irvine J.T.S. Crystal structure, oxygennonstoichiometry and conductivity of mixed ionic-electronic conductingperovskite composites with CeO2 // J. Electrochem. Soc. – 2010. – V. 157. – P.B159-B165.14.
Konysheva E., Blackley R., Irvine J.T.S. Conductivity behaviour of composites inthe La0.6Sr0.4CoO3± – CeO2 system: function of connectivity and interfacialinteractions // Chem. Mater. – 2010. – V. 22. – P. 4700-4711.15. Konysheva E., Irvine J.T.S. Transport properties of multi-cations doped ceriumoxide // Solid State Ionics. – 2011.
– V. 184. – P. 27-30.16. Konysheva E., Irvine J.T.S. The La0.95Ni0.6Fe0.4O3-CeO2 system: phase equilibria,crystal structure of components and transport properties // J. Solid State Chem. –2011. – V. 184. – P. 1499-1504.17.
Konysheva E., Irvine J.T.S. In –situ high-temperature neutron diffraction study ofcrystal structure of A–site deficient perovskites with transition metals onto the270B–sublattice and structure-conductivity correlation // Chem. Mater. – 2011. – V.23.
– P. 1841-1850.18. Konysheva E., Francis S.M., Irvine J.T.S., Roller A., Vannier R.N. Red-oxbehaviour in the La0.6Sr0.4CoO3±-CeO2 system // J. Mater. Chem. – 2011. – V. 21.– P. 15511-15520.19. Konysheva E., Xu X., Irvine J.T.S. On the existence of A–site deficiency inperovskites and relation to electrochemical performance // Adv. Mater. – 2012.
–V. 24. – P. 528-532.20. Konysheva E.Yu., Francis S.M. Identification of surface composition andchemical states in composites comprised of phases with fluorite and perovskitestructures by X-ray photoelectron spectroscopy // Appl. Surf. Sci. – 2013. – V.268. – P. 278-287.21. Konysheva E.Yu. Reduction of CeO2 in composites with transition metalcomplex oxides under hydrogen containing atmosphere and its correlation withcatalytic activity // Frontiers of Chemical Science and Engineering.
– 2013. – V. 7.– P. 249-261.22. Konysheva E.Yu., Kuznetsov M.V. Fluctuation of surface composition andchemical states at the hetero-interface in composites comprised of a phase withperovskite structure and a phase related to the Ruddlesden–Popper family ofcompounds // RSC Adv. – 2013. – V. 3. – P. 14114-14122.23. Liu W., Konysheva E.Yu. Conductivity of SrCrO4 and its influence ondeterioration of electrochemical performance of cathodes in solid oxide fuel cells //ECS Trans. – 2014.
– V. 59. – P. 327-332.24. Конышева Е.Ю. Влияние плотности тока на скорость отравления Cоcодержащих катодов топливных элементов хромом // Электрохимия. – 2014.– T. 50. – С. 706-713.Главы в коллективных монографиях:25. Konysheva E.Yu. Effect of interfacial interactions on modification of ceriumoxide and its reduction in composite materials under hydrogen containing271atmosphere // In: Cerium: molecular structure, technological applications andhealth effects.
Eds.: A. Izyumov, G. Plaksin. – New York: Nova SciencePublishers, 2012. – P. 147-164.26. Konysheva E.Yu. Methodological aspects of incorporation of a referenceelectrode into half-cell and fuel cell tests // In: Fuelling the future: advances inscience and technologies for energy generation, transmission and storage. Ed. A.Mendez-Vilas.
– Florida: BrownWalker Press, 2012. – P. 289-292.27. Konysheva E.Yu., Bukaemskiy A.A., Kuznetsov M.V., Ma T., Ermolenko Yu.E.Structural diversity, surface composition, and redox behavior in the La0.6Sr0.4CoO3– PrO2 system // In: Advances in Chemistry Research. Ed. J.C. Taylor. – NewYork: Nova Science Publishers, 2015. – V. 25. – P. 109-130.Публикации в других изданиях:28. Konycheva E., Laatsch J., Wessel E., Tietz F., Christiansen N., Singheiser L.,Hilpert K. Contact resistance between La0.65Sr0.3MnO3 and different steels using aperovskite intermediate contact layer // Proceedings of the 6th European SOFCForum.
Ed. M. Mogensen. Oberrohrdorf. Switzerland. – 2004. – V. 3. – P. 15861593.29. Konysheva E., Penkalla H., Wessel E., Seeling U., Mertens J., Singheiser L.,Hilpert K. Comparison of chromium poisoning by the ODS Alloy Cr5Fe1Y2O3 andthe high chromium ferritic steel Crofer22APU // Proceedings of the 9thInternational Symposium on SOFC. Eds.: S.C. Singhal, J. Mizusaki. TheElectrochemical Society Proceedings, Pennington, NJ. USA. – 2005. – V. 2005-07.– P. 1874-1884.30.
Hilpert K., Konysheva E., Nabielek H., Steinberger-Wilckens R., Tietz F, VinkeI.C., Wessel E., Zahid M. A semi-quantitative analysis of chromium poisoning inplanar SOFC // Proceedings of the 2005 Fuel Cell Seminar. Palm Spring. USA. –2005.
– P. 41–44.31. Конышева Е., Singheiser L., Hilpert K., Испарение хрома из сплавов и еговлияние на работу катода в твердооксидных топливных элементах // Тезисы272докладовIIIВсероссийскогосеминара"Топливныеэлементыиэнергоустановки на их основе". Екатеринбург. – 2006. – С. 67-69.32.
Nabielek H., Hilpert K., Konysheva E., Tietz F., Vinke I.C., Wessel E., Zahid M.,Correlation between chromium evaporation from SOFC ferritic steel interconnectsand cell degradation // Proceedings of the 7th European SOFC Forum.Ed. J.A. Kilner. Oberrohrdorf. Switzerland. – 2006. – P1003-132.273СПИСОК ЦИТИРУЕМОЙ ЛИТЕРАТУРЫ1. von Helmolt R., Wecker J., Holzapfel B., Schultz L., Sammer K. Giant negativemagnetoresistance in perovskite like La2/3Ba1/3MnOx ferromagnetic films // Phys.Rev. Lett. – 1993. – V.
71 – P. 2331-2333.2. Goodenough J.B. Electronic and ionic transport properties and other physicalaspects of perovskites // Rep. Prog. Phys. – 2004. – V. 67. – P. 1915-1993.3. Pena M.A., Fierro J.L.G. Chemical structures and performance of perovskiteoxides // Chem. Rev.
– 2001. – V. 101. – P. 1981-2017.4. Sunarso J., Baumann S., Serra J.M., Meulenberg W.A., Liu S., Lin Y.S., DinizdaCosta J.C. Mixedionic–electronic conducting(MIEC) ceramic–basedmembranes for oxygen separation // J. Membr. Sci. – 2008. – V. 320. – P. 13-41.5. Iwahara H., Asakura Y., Katahira K., Tanaka M. Prospect of hydrogen technologyusing proton–conducting ceramics // Solid State Ionics. – 2004.
– V. 168. – P. 299310.6. Minh N.Q. Ceramic fuel cells // J. Am. Ceram. Soc. – 1993. – V. 76. – P. 563–588.7. Steele B.C.H., Heinzel A. Materials for fuel–cell technologies // Nature. – 2001. –V. 414. – P. 345-352.8. Steinberger–Wilckens R., Vinke I.C., Blum L., Remmel J., Tietz F., QuadakkersW.J. Progress in SOFC stack development at Forschungszentrum Jülich //Proceedings of the 6th European SOFC Forum.
Ed. M. Mogensen. Oberrohrdorf.Switzerland. – 2004. V. 1. – P. 11-19.9. Zhu W.Z., Deevi S.C. Opportunity of metallic interconnects for solid oxide fuelcells: a status on contact resistance // Mater. Res. Bull. – 2003. – V. 38. – P. 957972.10. Visco S., Jacobson C., Chen X., De Jonghe L.C.
Enhancement of electrode andinterconnect performance // Report on the 5th SECA annual workshop and thesemi-annual core technology program peer review. Boston, USA. – 2004. – P. 31.11. van der Kleij N. SOFC Research in the EU – the role of the EuropeanCommission // Proceedings of the 6th European SOFC Forum. Ed. M. Mogensen.Oberrohrdorf. Switzerland. – 2004.