يعرض 1 - 20 نتائج من 36 نتيجة بحث عن '"I. S. Puzyrev"', وقت الاستعلام: 0.71s تنقيح النتائج
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    Academic Journal
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    Academic Journal

    المصدر: Alternative Energy and Ecology (ISJAEE); № 31-36 (2017); 63-72 ; Альтернативная энергетика и экология (ISJAEE); № 31-36 (2017); 63-72 ; 1608-8298

    وصف الملف: application/pdf

    Relation: https://www.isjaee.com/jour/article/view/1245/1093; Dokiya, M. SOFC system and technology / M. Dokiya // J. Solid State Ionics. – 2002. – Vol. 152–153. – P. 383–392.; Kawada, T. Current Electrolytes and Catalysts / T. Kawada, J. Mizusaki // Handbook of Fuel Cells: Fundamentals, Technology, Applycations. – Vol. 4: Fuel Cell Technology and Applications. – Chichester: Wiley and Sons. – 2003. – P. 987–1001.; Коровин, Н.В. Топливные элементы и электрохимические установки / Н.В. Коровин. – М.: Издательство МЭИ. – 2005. – 280 с.; Kek, D. Electrical and microstructural investigations of cermet anode/YSZ thin film systems / D. Kek, P. Panjan [et al.] // Journal of the European Ceramic Society. – 2001. – Vol. 21. – P. 1861–1865.; Zhang, Y.Recent progress on advanced materials for solid-oxide fuelcells operating below 500 ºC / Y. Zhang [et al.] // AdvancedMaterials. – 2017. V. 29(48) – P. 1–33.; Юшина, Л.Д. Пленки твердооксидных электролитов: монография / Л.Д. Юшина. – Екатеринбург: УрО РАН. – 2012. – 138 с.; Huang, H.H. Effects of substrate temperatures on the crystallizations and microstructures of electron beam evaporation YSZ thin films / H.H. Huang [et al.] // J. of Alloys and Compounds. – 2010. – Vol. 500. – No 1. – P. 82–86.; Wang, Y. Influence of preheating processes on the microstructure of laser glazed YSZ coatings / Y. Wang [et al.] // Ceramics International. – 2017 – Vol. 43. – No 5. – P. 4606–4611.; Wang, H. Preparation of YSZ films by magnetron sputtering for anode-supported SOFC / H. Wang [et al.] // Solid State Ionics. – 2011. – Vol. 192. – No 1. – P. 413–418.; Hermawan, E. Densification of an YSZ electrolyte layer prepared by chemical/electrochemical vapor deposition for metal-supported solid oxide fuel cells / E. Hermawan [et al.] // Ceramics International. – 2017. – Vol. 43. – No 13. – P. 10450–10459.; Veldhuis, S.A. Rapid densification of sol–gel derived yttria-stabilized zirconia thin films / S.A. Veldhuis, P. Brinks // Thin Solid Films. – 2015. – Vol. 589. – P. 503–507.; Abakevičienė, B. Synthesis of YSZ thin films by the novel aqueous sol–gel citrate-precursor method / B. Abakevičienė [et al.] // Solid State Ionics. – 2012. – Vol. 225. – P. 73–76.; Valiulis, A.V. Liquid phase deposition methods monitoring techniques influence for solid substrates and thin metal oxide films properties / A.V. Valiulis, P. Silickas // J. of Achievements in Materials and Manufacturing Engineering. – 2007. – Vol. 24. – No 1. – P. 188–192.; Zhang, Y. Redox cycling of Ni–YSZ anode investigated by TPR technique / Y. Zhang [et al.] // Solid State Ionics. – 2005. – Vol. 176. – P. 2193–2199.; Marrero, J. C. Characterization of yttriastabilized zirconia films deposited by dip-coating on La0.7Sr0.3MnO3 substrate: Influence of synthesis parameters / J.C. Marrero [et al.] // J. of Advanced Ceramics. 2013. – Vol. 2. – No 1. – P. 55–62.; Panthi, D. A novel multistep dip-coating method for the fabrication of anode-supported microtubular solid oxide fuel cells / D. Panthi, A. Tsutsumi // J. Solid State Electrochem. – 2014. – Vol. 18. – No 7. – P. 1899–1905.; Максимов, А.И. Основы золь-гель технологии нанокомпозитов / А.И. Максимов. – 2-е изд. – СПб.: Элмор, 2008. – 225 с.; Аверин, И.А. Особенности синтеза и исследования нанокомпозитных пленок, полученных методом золь-гель технологии / И.А. Аверин [и др.] // Известия высших учебных заведений. Поволжский регион. Физико-математические науки. – 2012. – № 2. – С. 155–161.; Дунюшкина, Л.А. Введение в методы получения пленочных электролитов для твердооксидных топливных элементов: монография / Л.А. Дунюшкина. – Екатеринбург: УрО РАН. – 2015. – 128 с.; Zhang, Y. Dip-coating thin yttria-stabilized zirconia films for solid oxide fuel cell applications / Y. Zhang [et al.] // Ceramics International. – 2004. – Vol. 30. – No 6. – P. 1049–1053.; Zhang, Y. Production of dense yttria-stabilized zirconia thin films by dip-coating for IT-SOFC application / Y. Zhang [et al.] // Journal of Applied Electro-chemistry. – 2004. – Vol. 34. – No 6. – P. 637–641.; Meng, X. Fabrication of Y2O3-stabilized-ZrO2(YSZ)/La0.8Sr0.2MnO3-α-YSZ dual-layer hollow fibers for the cathode-supported micro-tubular solid oxide fuel cells by a co-spinning/co-sintering technique / X. Meng [et al.] // Journal of Power Sources. – 2013. – Vol. 237. – P. 277–284.; Gaudon, M. Thick YSZ films prepared via a modified sol–gel route: Thickness control / M. Gaudon, Ch. Laberty-Robert // Journal of the European Ceramic Society. – 2006. – Vol. 26. – P. 3153–3160.; Marrero, J.C. Characterization of yttriastabilized zirconia films deposited by dip-coating on La0.7Sr0.3MnO3 substrate: Influence of synthesis parameters / J.C. Marrero [et al.] // Journal of Advanced Ceramics. – 2013. – Vol. 2(1). – P. 55–62.; Wang, Z. Effect of co-sintering temperature on the performance of SOFC with YSZ electrolyte thin films fabricated by dip-coating method / Z. Wang, K. Sun [et al.] // J. Solid State Electrochem. – 2010. – Vol. 14. – P. 637–642.; Mauvy, F. Electrochemical characterization of YSZ thick films deposited by dip-coating process / F. Mauvy, P. Lenormand [et al.] // Journal of Power Sources. – 2007. – Vol. 171. – P. 783–788.; Osinkin, D.A. Thermal expansion, gas permeability, and conductivity of Ni-YSZ anodes produced by different techniques / D.A. Osinkin [et al.] // J. Solid State Electrochemistry. – 2014. – Vol. 18. – P. 149–156.; Osinkin, D.A. High-performance anode-supported solid oxide fuel cell with impregnated electrodes/ D.A. Osinkin [et al.] // Journal of Power Sources. – 2015. – Vol. 288. – P. 20–25.; Shri Prakash, B. Properties and development of Ni/YSZ as an anode material in solid oxide fuel cell: A review // B. Shri Prakash, S. Senthil Kumar, S.T. Aruna // From Renewable & Sustainable Energy Reviews. – 2014. – Vol. 36. – P.149–179.; Nakajo, A. Compilation of mechanical properties for the structural analysis of solid oxide fuel cell stacks. Constitutive materials of anode-supported cells / A. Nakajo [et al.] // Ceramics International. – 2012. – Vol. 38. – No 5. – P. 3907–3927.; https://www.isjaee.com/jour/article/view/1245

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    المصدر: Molecules
    Volume 26
    Issue 21
    Molecules, Vol 26, Iss 6466, p 6466 (2021)

    وصف الملف: application/pdf

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    المصدر: J Mater Sci
    Journal of Materials Science

    وصف الملف: application/pdf

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