INVESTIGATION INTO THE CRYSTAL-STRUCTURE OF THE PEROVSKITE LEAD HAFNATE, PBHFO3

Citation
Dl. Corker et al., INVESTIGATION INTO THE CRYSTAL-STRUCTURE OF THE PEROVSKITE LEAD HAFNATE, PBHFO3, Acta crystallographica. Section B, Structural science, 54, 1998, pp. 18-28
Citations number
28
Categorie Soggetti
Crystallography
ISSN journal
01087681
Volume
54
Year of publication
1998
Part
1
Pages
18 - 28
Database
ISI
SICI code
0108-7681(1998)54:<18:IITCOT>2.0.ZU;2-F
Abstract
The room-temperature crystal structure of the perovskite lead hafnate PbHfO3 is investigated using both low-temperature single crystal X-ray diffraction (Mo K alpha radiation, lambda = 0.71069 Angstrom) and pol ycrystalline neutron diffraction (D1A instrument, ILL, lambda = 1.9078 8 Angstrom). Single crystal X-ray data at 100 K: space group Pbam, a = 5.856 (1), b = 11.729 (3), c = 8.212 (2) Angstrom, V = 564.04 Angstro m(3) with Z = 8, mu = 97.2 mm(-1), F(000) = 1424, final R = 0.038, wR = 0.045 over 439 reflections with F > 1.4 sigma(F). Polycrystalline ne utron data at 383 K: a = 5.8582 (3), b = 11.7224 (5), c = 8.2246 (3) A ngstrom, V = 564.80 Angstrom(3) with chi(2) = 1.62. Although lead hafn ate has been thought to be isostructural with lead zirconate, no compl ete structure determination has been reported, as crystal structure an alysis in both these materials is not straightforward. One of the main difficulties encountered is the determination of the oxygen positions , as necessary information lies in extremely weak I = 2n + 1 X-ray ref lections. To maximize the intensity of these reflections the X-ray dat a are collected at 100 K with unusually long scans, a procedure which had previously been found successful with lead zirconate. In order to establish that no phase transitions exist between room temperature and 100 K, and hence that the collected X-ray data are relevant to the ro om-temperature structure, birefringence measurements for both PbZrO3 a nd PbHfO3 are also reported.