The first determination of the phase diagram of the novel ferroelectric relaxor xBi(Zn(2/3)Nb(1/3))O(3)-(1â -â x)BaTiO(3) (BZN-BT) has been achieved with a combination of high-resolution X-ray and neutron diffraction up to the miscibility limit near x(BZN) = 20.0% over a temperature range 20 < T < 400â K. The combined X-ray and neutron data show that the instability within the xBZN-(1-x)BT system reaches a maximum at x = 3.9% and is driven by B-site displacement and distortion of the oxygen octahedra in the polar phases. Composition-dependent effects include a narrow Amm2-dominated region focused at x = 3.9%, significant convergence of the lattice parameters in both P4mm and Amm2 phases, and sharp maxima in piezoelectric coefficient d (33) and maximum polarization P (max). Lattice parameter dilation at x ⥠4.0% was observed for both P4mm and Amm2 unit cells, alongside the first appearance of Pm 3 m at 295â K and the onset of significant dielectric relaxation. Low-temperature neutron diffraction indicated a weak or non-existent temperature dependence on the transition from ferroelectric at x = 3.9% to ferroelectric relaxor at x = 4.0%. Temperature-dependent phase transitions were eliminated near x = 3.0%, with the ferroelectric limit observed at x = 5.0% and a transition to a low-loss relaxor dielectric near x = 8.0%.
Non-ambient X-ray and neutron diffraction of novel relaxor ferroelectric xBi(2)(Zn(2/3),Nb(1/3))O(3)-(1 - x)BaTiO(3).
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作者:Marshall Jessica, Walker David, Thomas Pamela
| 期刊: | Journal of Applied Crystallography | 影响因子: | 2.800 |
| 时间: | 2021 | 起止号: | 2021 Sep 29; 54(Pt 5):1437-1454 |
| doi: | 10.1107/S160057672100858X | ||
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