首页> 外文期刊>Acta Crystallographica, Section B. Structural Science >Structure-property correlation over five phases and four transitions in Pb5Al3F19
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Structure-property correlation over five phases and four transitions in Pb5Al3F19

机译:Pb5Al3F19中五个阶段和四个转变的结构性质相关性

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The calorimetric and dielectric properties of Pb5Al3F19 in the five phases stable under ambient pressure are correlated with structure for fuller characterization of each phase. The first-order transition between ferroelectric phase V and antiferroelectric phase IV at T-V,T-IV = 260 (5) K exhibits a thermal hysteresis of 135 (5) K on heating, with a maximum atomic displacement Delta(xyz)(m)ax = 1.21 (6) Angstrom; the transition from phase IV to ferroelastic phase III at 315 (5) K is also first order but with a thermal hysteresis of 10 (5) K and Delta(xyz)(max) = 0.92 (7) Angstrom; that from phase III to paraelastic phase II at 360 (5) K is second order without hysteresis and has Delta(xyz)(max) = 0.69 (4) Angstrom; and the transition from phase II to paraelectric phase I at 670 (5) K is second or higher order, with Delta(xyz)(max) = 0.7 (4) Angstrom. The measured entropy change DeltaS at T-V,T-IV agrees well with DeltaS as derived from the increased congurational energy by Stirling's approximation. For all other phase transitions, 0.5 greater than or equal to DeltaS > 0 J mol(-1) K-1 is consistent with an entropy change caused primarily by the changes in the vibrational energy. The structure of phase III is determined both by group theoreticalormal mode analysis and by consideration of the structures of phases II, IV and V reported previously; refinement is by simultaneous Rietveld analysis of the X-ray and neutron diffraction powder profiles. The structure of prototypic phase I is predicted on the basis of the atomic arrangement in phases II, III, IV and V. The introduction of 3d electrons into the Pb5Al3F19 lattice disturbs the structural equilibrium, the addition of 0.04% Cr3+ causing significant changes in atomic positions and increasing T-IV,T-III by similar to15 K. Substitution of Al3+ by 20% or more Cr3+ eliminates the potential minima that otherwise stabilize phases IV, III and II. [References: 45]
机译:在环境压力下稳定的五个相中,Pb5Al3F19的量热和介电性能与结构相关,以便更充分地表征每个相。在TV,T-IV = 260(5)K时铁电相V和反铁电相IV之间的一阶跃迁在加热时表现出135(5)K的热滞后,最大原子位移Delta(xyz)(m)轴= 1.21(6)埃;在315(5)K时从IV相到铁弹性相III的过渡也是一阶的,但具有10(5)K的热滞,Delta(xyz)(max)= 0.92(7)埃;从第三阶段到360(5)K的超弹性阶段II是没有滞后的二阶,并且Delta(xyz)(max)= 0.69(4)埃;并且在670(5)K时从II相到顺电I相的转变是二阶或更高阶,并且Delta(xyz)(max)= 0.7(4)埃。测得的在T-V,T-IV处的熵变化DeltaS与DeltaS非常吻合,这是通过斯特林近似从增加的配置能量得出的。对于所有其他相变,大于或等于DeltaS> 0 J mol(-1)K-1的0.5与主要由振动能的变化引起的熵变化一致。第三阶段的结构既可以通过小组理论/正常模式分析来确定,也可以通过考虑先前报道的第二,第四和第五阶段的结构来确定;通过同时对X射线和中子衍射粉末轮廓进行Rietveld分析来完善。原型相I的结构是根据相II,III,IV和V中的原子排列预测的。将3d电子引入Pb5Al3F19晶格会扰乱结构平衡,添加0.04%Cr3 +会导致原子的显着变化位置和增加T-IV,T-III约15K。Al3+取代20%或更多Cr3 +消除了可能的极小值,否则该极小值稳定了IV,III和II相。 [参考:45]

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