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II. İLERİ TEKNOLOJİLER ÇALIŞTAYI (İTÇ 2011) - Bilgesam

II. İLERİ TEKNOLOJİLER ÇALIŞTAYI (İTÇ 2011) - Bilgesam

II. İLERİ TEKNOLOJİLER ÇALIŞTAYI (İTÇ 2011) - Bilgesam

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193<br />

[17] Gunji A., Wen C., Otomo J., Kobayashi T., Ukai K., Mizutani Y., Takahashi H.,<br />

Carbon deposition behavior on Ni–ScSZ anodes for internal reforming solid oxide fuel<br />

cells, Journal of Power Sources 131, 285–288, (2004).<br />

[18] Sauvet A.L., Irvine J.T.S., Catalytic activity for steam methane reforming and physical<br />

characterization of La1-xSrxCr1-yNiyO3-d, Solid State Ionics 167, 1–8, (2004).<br />

[19] Pudmich, G., Boukamp B.A., Cuenca M.G., Jungen W., Zipprich W., Tietz F., Chromite/<br />

titanate based perovskites for application as anodes in solid oxide fuel cells,<br />

Solid State Ionics 135, 433–438, (2000).<br />

[20] Zhu W.Z., Deevi S.C., A review on the status of anode materials for solid oxide fuel<br />

cells, Materials Science and Engineering, A 362, 228-239, (2003).<br />

[21] Sauvet A.L., Fouletier J., Catalytic properties of new anode materials for solid oxide<br />

fuel cells operated under methane at intermediary temperature, Journal of Power<br />

Sources 101, 259-266, (2001).<br />

[22] Zhu W., Xia C., Fan J., Peng R., Meng G., Ceria coated Ni as anodes for direct utilization<br />

of methane in low-temperature solid oxide fuel cells, Journal of Power Sources<br />

160, 897-902, (2006).<br />

[23] Cheng Z., Zha S., Aguilar L., Liu M., Chemical, electrical, and thermal properties of<br />

strontium doped lanthanum vanadate, Solid State Ionics 176, 1921–1928, (2005).<br />

[24] Fu Q.X., Tietz F., Lersch P., Stöver D., Evaluation of Sr- and Mn-substituted LaAlO3<br />

as potential SOFC anode materials, Solid State Ionics 177, 1059–1069, (2006).<br />

[25] He H., Huang Y., Vohs J.M., Gorte R.J., Characterization of YSZ–YST composites for<br />

SOFC anodes, Solid State Ionics 175, 171–176, (2004).<br />

[26] Hagen A., Poulsen H.F., Klemensø T., V.Martins R., Honkimäki V., Buslaps T. and<br />

Feidenshans’l R., A depth-resolved in-situ study of the reduction and oxidation of Nibased<br />

anodes in solid oxide fuel cells, Fuel Cells 6, 361–366, (2006).<br />

[27] Pihlatie M., Kaiser A., Larsen, P.H., Mogensen M., Dimensional behavior of Ni–YSZ<br />

composites during redox cycling, Journal of The Electrochemical Society 156, B322-<br />

B329, (2009).<br />

[28] Wood A., Pastula M., Waldbillig D, Ivey, D.G., Initial testing of dolutions to tedox<br />

problems with anode-supported SOFC, Journal of The Electrochemical Society 153,<br />

A1929–A1934, (2006).<br />

[29] Faes A., Fuerbringer J.M., Mohamedic D., Wysera A.H., Cabochec G., Van Herle J.,<br />

Design of experiment approach applied to reducing and oxidizing tolerance of anode<br />

supported solid oxide fuel cell. Part I: Microstructure optimization, Journal of Power<br />

Sources 196, 7058–7069, (<strong>2011</strong>).<br />

[30] Jeangros Q., Faes A., Wagner J.B., Hansen T.W., Aschauer U., Van Herle J., Hessler-<br />

Wyser A., Dunin-Borkowski R.E., In situ redox cycle of a nickel–YSZ fuel cell anode in an<br />

environmental transmission electron microscope, Acta Materialia 58, 4578–4589, (2010).<br />

[31] Bastidas D.M., Tao S., Irvine J.T.S., A symmetrical solid oxide fuel cell demonstrating<br />

redox stable perovskite electrodes, Journal of Materials Chemistry 16, 1603-1605, (2006).<br />

[32] Ma Q., Tietz F., Leonide A., Tiffée E.I., Anode-supported planar SOFC with high<br />

performance and redox stability, Electrochemistry Communications 12, 1326–1328, (2010).<br />

[33] Hatae T, Matsuzaki Y., Yamashita S., Yamazaki Y., Current density dependence of<br />

changes in the microstructure of SOFC anodes during electrochemical oxidation, Solid<br />

State Ionics 180, 1305–1310, (2009).<br />

[34] Vedasri V., Young J.L., Birss V.I., A possible solution to the mechanical degradation<br />

of Niyttria stabilized zirconia anode-supported solid oxide fuel cells due to redox cycling,<br />

Journal of Power Sources 195, 5534–5542, (2010).

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