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基于铅的弛豫铁电体在高压下的八面体倾斜

Octahedral tilting in Pb-based relaxor ferroelectrics at high pressure.

作者信息

Maier Bernd J, Angel Ross J, Marshall William G, Mihailova Boriana, Paulmann Carsten, Engel Jens M, Gospodinov Marin, Welsch Anna-Maria, Petrova Dimitrina, Bismayer Ulrich

机构信息

Department Geowissenschaften, Universität Hamburg, Grindelallee 48, 20146 Hamburg, Germany.

出版信息

Acta Crystallogr B. 2010 Jun;66(Pt 3):280-91. doi: 10.1107/S0108768110014631. Epub 2010 May 15.

Abstract

We have employed a combination of powder neutron diffraction and single-crystal synchrotron X-ray diffraction to characterize the pressure-induced phase transitions that occur in the perovskite-type relaxor ferroelectric PbSc(0.5)Ta(0.5)O(3) (PST) and Pb(0.78)Ba(0.22)Sc(0.5)Ta(0.5)O(3) (PST-Ba). At ambient pressure the symmetry of the average structure for both compounds is Fm3m as a result of partial ordering of the Sc and Ta cations on the octahedral sites. At pressures above the phase transition both the neutron and X-ray diffraction patterns exhibit an increase in the intensities of h,k,l = all odd reflections and no appearance of additional Bragg reflections. Synchrotron single-crystal X-ray diffraction data show that the intensity of hhh peaks, h = 2n + 1, does not change with pressure. This indicates that the structural distortion arising from the phase transition has a glide-plane pseudo-symmetry along the 111 cubic directions. Rietveld refinement to the neutron powder data shows that the high-pressure phase has either R3c or R3 symmetry, depending on whether the presence of 1:1 octahedral cation ordering is neglected or taken into account, and comprises octahedral tilts of the type a(-)a(-)a(-) that continuously evolve with pressure. The cubic-to-rhombohedral transition is also marked by a large increase in the anisotropy of the displacement ellipsoids of the Pb cations, indicating larger displacements of Pb cations along the rhombohedral threefold axis rather than within the perpendicular plane. For PST the anisotropy of the Pb displacement parameters decreases at approximately 3 GPa above the phase-transition pressure. For both PST and PST-Ba the average magnitudes of Pb-cation displacements expressed in terms of isotropic displacement ellipsoids gradually decrease over the entire pressure range from ambient to 7.35 GPa.

摘要

我们采用了粉末中子衍射和单晶同步辐射X射线衍射相结合的方法,来表征钙钛矿型弛豫铁电体PbSc(0.5)Ta(0.5)O(3)(PST)和Pb(0.78)Ba(0.22)Sc(0.5)Ta(0.5)O(3)(PST-Ba)中发生的压力诱导相变。在常压下,由于Sc和Ta阳离子在八面体位置上的部分有序排列,这两种化合物的平均结构对称性均为Fm3m。在高于相变压力时,中子和X射线衍射图谱均显示h、k、l = 全为奇数的反射强度增加,且没有出现额外的布拉格反射。同步辐射单晶X射线衍射数据表明,h = 2n + 1的hhh峰强度不随压力变化。这表明相变引起的结构畸变沿111立方方向具有滑移面赝对称性。对中子粉末数据进行的Rietveld精修表明,高压相具有R3c或R3对称性,这取决于是否忽略或考虑1:1八面体阳离子有序排列的存在,并且包含随着压力连续演变的a(-)a(-)a(-)型八面体倾斜。立方相向菱面体相的转变还以Pb阳离子位移椭球的各向异性大幅增加为特征,表明Pb阳离子沿菱面体三重轴的位移大于在垂直平面内的位移。对于PST,在高于相变压力约3 GPa时,Pb位移参数的各向异性降低。对于PST和PST-Ba,以各向同性位移椭球表示的Pb阳离子位移的平均大小在从常压到7.35 GPa的整个压力范围内逐渐减小。

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