Thin Ni-YSZ films fabricated by magnetron co-sputtering used as anodes for solid oxide fuel cells; IFOST 2012; Vol. 1
| Источник: | IFOST 2012: The 7th International Forum on Strategic Techology, September 17-21, 2012, Tomsk/ National Research Tomsk Polytechnic University (TPU).— , 2012 Vol. 1.— 2012.— P. 78-81 |
|---|---|
| Другие авторы: | Ionov I. V. Igor Vyacheslavovich, Sochugov N. S. Nikolay Semenovich, Soloviev A. A. Andrey Aleksandrovich, Kovalchuk A. N. Anastasia Nikolaevna, Tcybenko A. O. Alena Olegovna, Sigfusson T. I. |
| Примечания: | Ni-YSZ (YSZ - yttria-stabilized zirconia) films were fabricated by the reactive magnetron co-sputtering of Ni and Zr-Y targets. The maximum deposition rate was 6 μm·h-1. The oxygen flow and the DC power supplied to the Ni target were tuned to study the effect of the deposition conditions on the film properties and to obtain the film with required parameters. The chemical composition and the surface morphology films were studied. The columnar morphology was observed in the as-deposited films. Electrolyte supported solid oxide fuel cells (SOFC) with sputtered anode and brush painted La0.7Sr0.3MnO3 (LSM) cathode were made to study the thin Ni-YSZ anode characteristics. Voltage-current curves of the electrolyte supported SOFCs with the brush painted and the magnetron sputtered Ni-YSZ anode were compared. The maximum power density of the SOFC with the magnetron sputtered anode at 800°C was 210 mW/cm2. |
| Язык: | английский |
| Опубликовано: |
2012
|
| Серии: | Section 1. Chemical engineering and "Green technology" |
| Предметы: | |
| Формат: | Статья |
| Запись в KOHA: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=255042 |
Схожие документы
Solid oxide fuel cell anode surface modification by magnetron sputtering of NiO/YSZ thin film; Energy Fluxes and Radiation Effects (EFRE-2016)
Опубликовано: (2016)
Опубликовано: (2016)
Application of magnetron sputtering for NiO/YSz anode layer of solid oxide fuel cell formation; Перспективы развития фундаментальных наук
по: Tcybenko A. O. Alena Olegovna
Опубликовано: (2013)
по: Tcybenko A. O. Alena Olegovna
Опубликовано: (2013)
Solid oxide fuel cell anode surface modification by magnetron sputtering of NiO/YSZ thin film; Journal of Physics: Conference Series; Vol. 830 : Energy Fluxes and Radiation Effects 2016
Опубликовано: (2017)
Опубликовано: (2017)
Formation of NiO/YSZ functional anode layers of solid oxide fuel cells by magnetron sputtering; Russian Journal of Electrochemistry; Vol. 53, iss. 6
Опубликовано: (2017)
Опубликовано: (2017)
Формирование NiO/YSZ функциональных анодных слоев твердооксидных топливных элементов методом магнетронного распыления; Электрохимия; Т. 53, № 6
Опубликовано: (2017)
Опубликовано: (2017)
Structural features of N-containing titanium dioxide thin films deposited by magnetron sputtering; Thin Solid Films; Vol. 627
Опубликовано: (2017)
Опубликовано: (2017)
Comparison of characteristics of solid oxide fuel cells with YSZ and CGO film solid electrolytes formed using magnetron sputtering technique; Russian Journal of Electrochemistry; Vol. 52, iss. 7
Опубликовано: (2016)
Опубликовано: (2016)
Effect of magnetron sputtered anode functional layer on the anode-supported solid oxide fuel cell performance; International Journal of Hydrogen Energy; Vol. 44, iss. 58
Опубликовано: (2019)
Опубликовано: (2019)
Polyether Ether Ketone Coated with Ultra-Thin Films of Titanium Oxide and Zirconium Oxide Fabricated by DC Magnetron Sputtering for Biomedical Application; Materials; Vol. 15, iss. 22
Опубликовано: (2022)
Опубликовано: (2022)
Performance Characteristics of Solid Oxide Fuel Cells with YSZ/CGO Electrolyte; Key Engineering Materials; Vol. 743 : High Technology: Research and Applications (HTRA 2016)
Опубликовано: (2017)
Опубликовано: (2017)
Magnetron-Sputtered YSZ and CGO Electrolytes for SOFC; Journal of Electronic Materials; Vol. 45, iss. 8
Опубликовано: (2016)
Опубликовано: (2016)
Single SOFC with Supporting Ni-YSZ Anode, Bilayer YSZ/GDC Film Electrolyte, and La2NiO4+delta Cathode; Russian Journal of Electrochemistry; Vol. 54, iss. 6
Опубликовано: (2018)
Опубликовано: (2018)
Scale‐up of Solid Oxide Fuel Cells with Magnetron Sputtered Electrolyte; Fuel Cells; Vol. 17, iss. 3
Опубликовано: (2017)
Опубликовано: (2017)
Optical and AFM studies on p-SNS thin films deposited by magnetron sputtering; Chalcogenide Letters; Vol. 12, iss. 9
по: An V. V. Vladimir Vilorievich
Опубликовано: (2015)
по: An V. V. Vladimir Vilorievich
Опубликовано: (2015)
Thin hydroxyapatite coating on AZ91D magnesium alloy fabricated via RF-magnetron sputtering; Физико-технические проблемы в науке, промышленности и медицине
по: Melnikov E. S. Evgenii Sergeevich
Опубликовано: (2015)
по: Melnikov E. S. Evgenii Sergeevich
Опубликовано: (2015)
Novel entropy-stabilized ultra high temperature ceramics thin films prepared by magnetron sputtering; Современные материалы и технологии новых поколений
Опубликовано: (2019)
Опубликовано: (2019)
Wettability of Thin Silicate-Containing Hydroxyapatite Films Formed by RF-Magnetron Sputtering; Russian Physics Journal; Vol. 56, iss. 10
Опубликовано: (2014)
Опубликовано: (2014)
Magnetron sputtering with hot solid target: thermal processes and erosion; Acta Polytechnica; Vol. 56, № 6
Опубликовано: (2016)
Опубликовано: (2016)
High-rate magnetron sputtering with hot target; Surface and Coatings Technology; Vol. 308 : The 43rd International Conference on Metallurgical Coatings and Thin Films
Опубликовано: (2016)
Опубликовано: (2016)
Investigating Thin Ti–O–N Films Deposited via Reactive Magnetron Sputtering; Bulletin of the Russian Academy of Sciences: Physics; Vol. 82, iss. 9
по: Boytsova E. L. Elena Lvovna
Опубликовано: (2018)
по: Boytsova E. L. Elena Lvovna
Опубликовано: (2018)
Erratum to: Wettability of Thin Silicate-Containing Hydroxyapatite Films formed by RF-Magnetron Sputtering; Russian Physics Journal; Vol. 56, iss. 11
Опубликовано: (2014)
Опубликовано: (2014)
Thin hydroxyapatite coating on AZ91D magnesium alloy fabricated via RF-magnetron sputtering; IOP Conference Series: Materials Science and Engineering; Vol. 98 : Interdisciplinary Problems of Nanotechnology, Biomedicine and Nanotoxicology (Nanobiotech 2015)
Опубликовано: (2015)
Опубликовано: (2015)
Magnetron-sputtered La0.6Sr0.4Co0.2Fe0.8O3 nanocomposite interlayer for solid oxide fuel cell; Journal of Nanoparticle Research; Vol. 19, iss. 3
Опубликовано: (2017)
Опубликовано: (2017)
Formation and structural features of nitrogen-doped titanium dioxide thin films grown by reactive magnetron sputtering; Applied Surface Science; Vol. 534
Опубликовано: (2020)
Опубликовано: (2020)
Magnetron sputtered LSC thin films for solid oxide fuel cell application; Journal of Physics: Conference Series; Vol. 1115 : 6th International Congress "Energy Fluxes and Radiation Effects", EFRE2018. 14th International Conference on Modification of Materials with Particle Beams and Plasma Flows (14th CMM)
Опубликовано: (2018)
Опубликовано: (2018)
Структура и свойства тонких пленок ZrO[2]:Y[2]O[3], формируемых методом магнетронного распыления: автореферат диссертации на соискание ученой степени кандидата технических наук; спец. 01.04.07
по: Шипилова А. В. Анна Викторовна
Опубликовано: (Томск, 2018)
по: Шипилова А. В. Анна Викторовна
Опубликовано: (Томск, 2018)
Deposition of a Thin-Film CGO Electrolyte for Solid Oxide Fuel Cells; Key Engineering Materials; Vol. 685 : High Technology: Research and Applications 2015 (HTRA 2015)
Опубликовано: (2016)
Опубликовано: (2016)
Structural Changes of Titanium Dioxide Thin Films Deposited by Reactive Magnetron Sputtering through Nitrogen Incorporation; Key Engineering Materials; Vol. 683 : Multifunctional Materials: Development and Application
по: Pustovalova A. A. Alla Aleksandrovna
Опубликовано: (2016)
по: Pustovalova A. A. Alla Aleksandrovna
Опубликовано: (2016)
The oxygen-deficient TiO2 films deposited by a dual magnetron sputtering; Vacuum; Vol. 134
Опубликовано: (2016)
Опубликовано: (2016)
Effects of sputtering gas on the microstructure of Ir thin films deposited by HiPIMS and pulsed DC sputtering; Surface and Coatings Technology; Vol. 412
по: Zenkin S. P. Sergey Petrovich
Опубликовано: (2021)
по: Zenkin S. P. Sergey Petrovich
Опубликовано: (2021)
Magnetron sputtering system; Физико-технические проблемы в науке, промышленности и медицине
по: Lazarev A. V.
Опубликовано: (2015)
по: Lazarev A. V.
Опубликовано: (2015)
Nitrogen-Doped Titanium Dioxide Thin Films Formation on the Surface of PLLA Electrospun Microfibers Scaffold by Reactive Magnetron Sputtering Method; Plasma Chemistry and Plasma Processing; Vol. 39, iss. 2
Опубликовано: (2019)
Опубликовано: (2019)
Study of tungsten disulfide thin films produces by magnetron spattering of nanostructured targets; Перспективы развития фундаментальных наук
по: Bozheyev F. E.
Опубликовано: (2012)
по: Bozheyev F. E.
Опубликовано: (2012)
Effect of energy on the formation of flexible hard Al-Si-N films prepared by magnetron sputtering; Vacuum; Vol. 133
Опубликовано: (2016)
Опубликовано: (2016)
Thin calcium-phosphate coatings produced by RF Magnetron sputtering and prospects for their use in biomedical engineering; Biomedical Engineering; Vol. 42, iss. 3
Опубликовано: (2008)
Опубликовано: (2008)
Properties of ultra-thin Cu films grown by high power pulsed magnetron sputtering; Thin Solid Films; Vol. 631
Опубликовано: (2017)
Опубликовано: (2017)
Ion beam deflection in focusing magnetically insulated ion diodes with passive anode; Energy Fluxes and Radiation Effects (EFRE-2016)
Опубликовано: (2016)
Опубликовано: (2016)
Структура и свойства тонких пленок ZrO[2]:Y[2]O[3], формируемых методом магнетронного распыления: диссертация на соискание ученой степени кандидата технических наук; спец. 01.04.07
по: Шипилова А. В. Анна Викторовна
Опубликовано: (Томск, 2018)
по: Шипилова А. В. Анна Викторовна
Опубликовано: (Томск, 2018)
Bias-assisted magnetron sputtering of yttria-stabilised zirconia thin films; Journal of Physics: Conference Series; Vol. 552 : International Congress on Energy Fluxes and Radiation Effects (EFRE-2014), 21–26 September 2014, Tomsk, Russia
Опубликовано: (2014)
Опубликовано: (2014)
The use of magnetron sputtering for the deposition of thin titanium coatings on the surface of bioresorbable electrospun fibrous scaffolds for vascular tissue engineering: A pilot study; Applied Surface Science; Vol. 398
Опубликовано: (2017)
Опубликовано: (2017)
Схожие документы
-
Solid oxide fuel cell anode surface modification by magnetron sputtering of NiO/YSZ thin film; Energy Fluxes and Radiation Effects (EFRE-2016)
Опубликовано: (2016) -
Application of magnetron sputtering for NiO/YSz anode layer of solid oxide fuel cell formation; Перспективы развития фундаментальных наук
по: Tcybenko A. O. Alena Olegovna
Опубликовано: (2013) -
Solid oxide fuel cell anode surface modification by magnetron sputtering of NiO/YSZ thin film; Journal of Physics: Conference Series; Vol. 830 : Energy Fluxes and Radiation Effects 2016
Опубликовано: (2017) -
Formation of NiO/YSZ functional anode layers of solid oxide fuel cells by magnetron sputtering; Russian Journal of Electrochemistry; Vol. 53, iss. 6
Опубликовано: (2017) -
Формирование NiO/YSZ функциональных анодных слоев твердооксидных топливных элементов методом магнетронного распыления; Электрохимия; Т. 53, № 6
Опубликовано: (2017)