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Crystallographic and optical study of PbHfO3 crystals
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Huband, Steven, Glazer, A. M. (Anthony Michael), Roleder, K., Majchrowski, A. and Thomas, Pam A. (2017) Crystallographic and optical study of PbHfO3 crystals. Journal of Applied Crystallography, 50 (2). pp. 378-384. doi:10.1107/S1600576717000309 ISSN 0021-8898.
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Official URL: http://dx.doi.org/10.1107/S1600576717000309
Abstract
The symmetry of the intermediate high-temperature phase of PbHfO3 has been determined unambiguously to be orthorhombic using a combination of high-resolution X-ray diffraction and birefringence imaging microscopy measurements of crystal plates. While lattice parameter measurements as a function of temperature in the intermediate phase are consistent with either orthorhombic or tetragonal symmetry, domain orientations observed in birefringence imaging microscopy measurements utilizing the Metripol system are only consistent with orthorhombic symmetry with the unit cell in the rhombic orientation of the pseudocubic unit cell.
Item Type: | Journal Article | ||||||
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Subjects: | Q Science > QD Chemistry | ||||||
Divisions: | Faculty of Science, Engineering and Medicine > Science > Physics | ||||||
Library of Congress Subject Headings (LCSH): | Lead -- Analysis, Crystallography | ||||||
Journal or Publication Title: | Journal of Applied Crystallography | ||||||
Publisher: | Wiley-Blackwell Publishing Ltd. | ||||||
ISSN: | 0021-8898 | ||||||
Official Date: | 1 June 2017 | ||||||
Dates: |
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Volume: | 50 | ||||||
Number: | 2 | ||||||
Page Range: | pp. 378-384 | ||||||
DOI: | 10.1107/S1600576717000309 | ||||||
Status: | Peer Reviewed | ||||||
Publication Status: | Published | ||||||
Access rights to Published version: | Open Access (Creative Commons) | ||||||
Date of first compliant deposit: | 11 August 2017 | ||||||
Date of first compliant Open Access: | 11 August 2017 | ||||||
Funder: | Advantage West Midlands (AWM), European Regional Development Fund (ERDF) | ||||||
Grant number: | Science Hydrogen Energy, Science City & Creating and Characterizing Next Generation Advanced Materials (AWM) |
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