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93Nb NMR 和 DFT 研究 NaNbO3 的多晶型物。

93Nb NMR and DFT investigation of the polymorphs of NaNbO3.

机构信息

School of Chemistry and EaStCHEM, University of St. Andrews, North Haugh, St. Andrews, KY16 9ST, United Kingdom.

出版信息

Phys Chem Chem Phys. 2011 Apr 28;13(16):7565-76. doi: 10.1039/c1cp20258h. Epub 2011 Mar 21.

Abstract

Sodium niobate (NaNbO(3)) has a particularly complex phase diagram, with a series of phase transitions as a function of temperature and pressure, and even at room temperature a number of different structural variations have been suggested. Recent work has demonstrated that bulk powders of NaNbO(3), prepared using a variety of synthetic approaches, contain a mixture of perovskite phases; the commonly reported Pbcm phase and a second, polar phase tentatively identified as belonging to space group P2(1)ma. The two phases exhibit very similar (23)Na MAS NMR spectra, although high-resolution MQMAS spectra were able to distinguish between them. Here, we investigate whether different perovskite polymorphs can be distinguished and/or identified using a variety of (93)Nb NMR methods, including MAS, MQMAS and wideline experiments. We compare the experimental results obtained for these more common perovskite materials to those for the metastable ilmenite polymorph of NaNbO(3). Our experimental results are supported by first-principles calculations of NMR parameters using a planewave pseudopotential approach. The calculated NMR parameters appear very different for each of the phases investigated, but high forces on the atoms indicate many of the structural models derived from diffraction require optimisation of the atomic coordinates. After geometry optimisation, most of these perovskite phases exhibit very similar NMR parameters, in contrast to recent work where it was suggested that (93)Nb provides a useful tool for distinguishing NaNbO(3) polymorphs. Finally, we consider the origin of the quadrupolar coupling in these materials, and its dependence on the deviation from ideality of the NbO(6) octahedra.

摘要

铌酸钠(NaNbO(3))具有特别复杂的相图,其相转变随温度和压力的变化而变化,甚至在室温下也已经提出了许多不同的结构变体。最近的研究表明,使用各种合成方法制备的大块铌酸钠粉末包含了一系列钙钛矿相;常见的 Pbcm 相和第二个极性相被初步确定为属于空间群 P2(1)ma。这两种相具有非常相似的(23)Na MAS NMR 谱,尽管高分辨率 MQMAS 谱能够将它们区分开来。在这里,我们研究了是否可以使用各种(93)Nb NMR 方法来区分和/或鉴定不同的钙钛矿多晶型物,包括 MAS、MQMAS 和宽带实验。我们将这些更常见的钙钛矿材料的实验结果与 NaNbO(3)的亚稳金红石多晶型物的实验结果进行了比较。我们的实验结果得到了第一性原理计算的支持,该计算使用平面波赝势方法计算了 NMR 参数。计算出的 NMR 参数对于所研究的每个相都非常不同,但原子上的高力表明,许多源自衍射的结构模型需要优化原子坐标。经过几何优化后,这些钙钛矿相中的大多数表现出非常相似的 NMR 参数,与最近的研究形成对比,后者认为(93)Nb 是区分 NaNbO(3)多晶型物的有用工具。最后,我们考虑了这些材料中四极耦合的起源及其对 NbO(6)八面体偏离理想状态的依赖性。

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