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Analytical electron microscopy study of high Tc superconductor YBa2Cu3O7

โœ Scribed by Sabatini, R. L. ;Heald, S. M. ;Suenaga, Masaki ;Moodenbaugh, A. R. ;Jones, R. H.


Publisher
Wiley (John Wiley & Sons)
Year
1988
Tongue
English
Weight
390 KB
Volume
8
Category
Article
ISSN
0741-0581

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โœฆ Synopsis


The high T, superconducting material YBazCu307 shows a complex relationship between microstructure and oxygen content, which are controlled by length of heat treatment, atmosphere, and quench rate. An AEM investigation studying changes in the oxygen near edge features was undertaken. Electron energy loss spectroscopy (EELS) measurements have the important advantage that they can be made on single crystal grains, allowing orientation-dependent studies. Both ion-milled and crushed samples with varying 0 2 content were analyzed. The structure of YBaCu307 was determined by neutron diffraction to be orthorhombic with distinct Cu-0 chains along the baxis as well as Cu-0 planes in the a-b plane. Therefore, by looking for a crystallographic dependence of the oxygen K-edge one might be able to distinguish inequivalent oxygen atoms by their core level binding energy and correlate site occupancy with varying 0 2 content. The EELS results on the oxygen K-edge are strongly dependent on oxygen content, most noticeably when the caxis is parallel to the electron beam.


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