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钙钛矿 Pb2TmSbO6 的高温演化中的原始多晶型序列。

An original polymorph sequence in the high-temperature evolution of the perovskite Pb2TmSbO6.

机构信息

Área de Química General e Inorgánica, Departamento de Química, Facultad de Química, Bioquímica y Farmacia, Universidad Nacional de San Luis, Chacabuco y Pedernera, 5700 San Luis, Argentina.

出版信息

J Am Chem Soc. 2010 Oct 20;132(41):14470-80. doi: 10.1021/ja104417f.

Abstract

The synthesis, crystal structure, and dielectric properties of the novel double perovskite Pb(2)TmSbO(6) are described. The room-temperature crystal structure was determined by ab initio procedures from neutron powder diffraction (NPD) and synchrotron X-ray powder diffraction (SXRPD) data in the monoclinic C2/c (No. 15) space group. This double perovskite contains a completely ordered array of alternating TmO(6) and SbO(6) octahedra sharing corners, tilted in antiphase along the three pseudocubic axes, with an a(-)b(-)b(-) tilting scheme, which is very unusual in the crystallochemistry of perovskites. The lead atoms occupy a highly asymmetric void with 8-fold coordination due to the stereoactivity of the Pb(2+) lone electron pair. This compound presents three successive phase transitions in a narrow temperature range (at T1 = 385 K, T2 = 444 K, and T3 = 460 K in the heating run) as shown by differential scanning calorimetry (DSC) data. The crystal structure and temperature-dependent NPD follow the space-group sequence C2/c → P2(1)/n → R3 → Fm3m. This is a novel polymorph succession in the high-temperature evolution of perovskite-type oxides. The Tm/Sb long-range ordering is preserved across the consecutive phase transitions. Dielectric permittivity measurements indicate the presence of a paraelectric/antiferroelectric transition (associated with the last structural transition), as suggested by the negative Curie temperature obtained from the Curie-Weiss fit of the reciprocal permittivity.

摘要

新型双钙钛矿 Pb(2)TmSbO(6)的合成、晶体结构和介电性能。通过中子粉末衍射(NPD)和同步加速器 X 射线粉末衍射(SXRPD)数据的从头算程序,在单斜 C2/c(No.15)空间群中确定了室温晶体结构。这种双钙钛矿包含交替的 TmO(6)和 SbO(6)八面体的完全有序排列,沿三个赝立方轴共享角,沿相反相位倾斜,具有 a(-)b(-)b(-)倾斜方案,这在钙钛矿的结晶化学中非常不常见。由于 Pb(2+)孤对电子的立体活性,铅原子占据高度不对称的八面体空隙,具有 8 重配位。该化合物在很窄的温度范围内呈现三个连续的相变(在升温过程中,T1=385K,T2=444K,T3=460K),如差示扫描量热法(DSC)数据所示。晶体结构和温度相关的 NPD 遵循空间群序列 C2/c→P2(1)/n→R3→Fm3m。这是钙钛矿型氧化物高温演化中的一种新型多型连续。Tm/Sb 长程有序在连续相变中得以保留。介电常数测量表明存在顺电/反铁电转变(与最后一个结构转变有关),这与从介电常数倒数的居里-外斯拟合得到的负居里温度有关。

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