%0 Journal Article %A Zotov, N. %A Hospach, A. %A Mauer, G. %A Sebold, D. %A Vaßen, R. %T Deposition of La1−x Sr x Fe1−y Co y O3−δ Coatings with Different Phase Compositions and Microstructures by Low-Pressure Plasma Spraying-Thin Film (LPPS-TF) Processes %J Journal of thermal spray technology %V 21 %N 3-4 %@ 1059-9630 %C Boston, Mass. %I Springer %M PreJuSER-21053 %P 441-447 %D 2012 %Z Record converted from VDB: 12.11.2012 %X Perovskite-type materials with the general chemical formula A(1-x) A' (x) B1-y B' (y) O3-delta have received considerable attention as candidates for oxygen separation membranes. Preparation of La1-x Sr (x) Fe1-y Co (y) O3-delta (LSFC) coatings by low-pressure plasma spraying-thin film processes using different plasma spray parameters is reported and discussed. Deposition with Ar-He plasma leads to formation of coatings containing a mixture of cubic LSFC perovskite, SrLaFeO4, FeCo, and metal oxides. Coatings deposited at higher oxygen partial pressures by pumping oxygen into the vacuum chamber contain more than 85% perovskite and only a few percent Fe3-x Co (x) O-4, and/or CoO. The microstructures of the investigated LSFC coatings depend sensitively on the oxygen partial pressure, the substrate temperature, the plasma jet velocities, and the deposition rate. Coatings deposited with Ar-rich plasma, relatively low net torch power, and with higher plasma jet velocities are most promising for applications as oxygen permeation membranes. %K J (WoSType) %F PUB:(DE-HGF)16 %9 Journal Article %U <Go to ISI:>//WOS:000303472800011 %R 10.1007/s11666-012-9768-8 %U https://juser.fz-juelich.de/record/21053