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Investigation of Local A-site Chemistry in Barium Strontium Titanate Using Aberration Corrected STEM, EELS and EDS

Published online by Cambridge University Press:  27 August 2014

Matthew J. Burch
Affiliation:
North Carolina State University, Materials Science and Engineering, Raleigh, NCUSA
Jing Li
Affiliation:
North Carolina State University, Materials Science and Engineering, Raleigh, NCUSA
Lauren Garten
Affiliation:
Pennsylvania State University, Materials Science and Engineering, University Park, PAUSA
Xiahan Sang
Affiliation:
North Carolina State University, Materials Science and Engineering, Raleigh, NCUSA
James Lebeau
Affiliation:
North Carolina State University, Materials Science and Engineering, Raleigh, NCUSA
Susan Trolier-Mckinstry
Affiliation:
Pennsylvania State University, Materials Science and Engineering, University Park, PAUSA
Jon-Paul Maria
Affiliation:
North Carolina State University, Materials Science and Engineering, Raleigh, NCUSA
Elizabeth C. Dickey
Affiliation:
North Carolina State University, Materials Science and Engineering, Raleigh, NCUSA

Abstract

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Type
Abstract
Copyright
Copyright © Microscopy Society of America 2014 

References

[1] Szymczak, L., Ujma, Z., Hañderek, J., and Kapusta, J. Ceramics International 30 (2004), p. 1003.Google Scholar
[2] Wenhui, Ma and Cross, L. Eric Applied Physics Letters, 81 (2002), p. 3440.Google Scholar
[3] Xiahan, Sang and LeBeau, James M. Ultramicroscopy 138 (2014), p. 28.Google Scholar
[4] The authors acknowledge funding by Defense MicroElectronics Activity (H94003-10-0-1002). This material is based upon work supported by the National Science Foundation Graduate Research Fellowship for M.J. Burch under Grant No. DGE-0946818. Any opinion, findings, and conclusions or recommendations expressed in this material are those of the authors(s) and do not necessarily reflect the views of the National Science Foundation.Google Scholar