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Nature of the Monoclinic to Cubic Phase Transition in the Fast Oxygen Ion Conductor La_2Mo_2O_9 (LAMOX)

机译:快速氧离子导体La_2Mo_2O_9(LAMOX)中单斜向立方相变的性质

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La_2Mo_2O_9 (LAMOX) is a fast oxygen ion conductor which shows high oxygen ion conductivities comparable to those of yttria-sabilized zirconia (YSZ). LAMOX is subject to a structural phase transition from the nonconductive monoclinic form to the highly conductive cubic form at about 580℃. The origin of the conductivity in cubic LAMOX has been suggested to be due to a "disorder" in the O sublattice without any insight into the real distribution of the oxygen ion. In this paper, thanks to the application of the neutron atomic pair distribution function (PDF) analysis, we provide evidence that the local structure of the cubic polymorph of LAMOX is exactly the same of that of the monoclinic phase, thus indicating that the structural phase transition is actually a transition from a static to a dynamic distribution of the oxygen defects. This work represents the first application of the atomic-pair distribution function analysis to the study of an oxygen fast-oxide ion conductor and clearly indicates that a more reliable and detailed description of their local structure, particularly in the highly conductive phases, can lead to a better comprehension of the structure-property correlation, which is the starting point for the design of new and optimized functional materials.
机译:La_2Mo_2O_9(LAMOX)是一种快速的氧离子导体,与氧化钇稳定的氧化锆(YSZ)相比,具有高的氧离子电导率。 LAMOX在约580℃时经历了从非导电单斜晶形式到高导电立方晶形式的结构相变。有人提出立方型LAMOX中电导率的起源是由于O亚晶格中的“无序”而没有深入了解氧离子的实际分布。在本文中,由于中子原子对分布函数(PDF)分析的应用,我们提供了证据表明LAMOX的立方多晶型物的局部结构与单斜相的局部结构完全相同,从而表明结构相转变实际上是氧缺陷从静态分布到动态分布的过渡。这项工作代表了原子对分布函数分析在氧快速氧化物离子导体研究中的首次应用,并且清楚地表明,对其局部结构(尤其是在高导电相中)的更可靠和详细的描述可以导致更好地理解结构-特性的相关性,这是设计新的和优化的功能材料的起点。

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