electron energy loss spectrometry
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Author(s):  
M Stöger-Pollach ◽  
C Hébert ◽  
E C Karl-Rückert ◽  
P Schattschneider ◽  
B Rau ◽  
...  

2009 ◽  
Vol 15 (S2) ◽  
pp. 432-433
Author(s):  
AL Koh ◽  
M Watanabe ◽  
R Sinclair

Extended abstract of a paper presented at Microscopy and Microanalysis 2009 in Richmond, Virginia, USA, July 26 – July 30, 2009


2008 ◽  
Vol 55-57 ◽  
pp. 917-920
Author(s):  
Tanawadee Dechakupt ◽  
G. Yang ◽  
Ian M. Reaney ◽  
Clive A. Randall ◽  
S. Trolier-McKinstry

The microstructure and interface quality of chemical solution deposited barium titanate thin films on Ni foil were studied. Cross-sectional transmission electron microscopy shows that a ~200 nm thick barium titanate film annealed in a controlled oxygen partial pressure consists of equiaxed grains with grain size range of 24-75 nm (~ 42 nm average). NiO was detected after re-oxidation by X-ray diffraction, but not by transmission electron microscopy, suggesting that the oxide is not a continuous barrier layer, but is spatially distributed in the films. Oxygen non-stoichiometry and the existence of C in barium titanate films were observed by electron energy loss spectrometry. In addition, it was found that there is a 5-8 nm thick Ni-Ba alloy developed at the interface between the barium titanate film and Ni foil.


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