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阳离子组成对Zr(2)Y(2)O(7)-Y(3)NbO(7)体系中氧化物导电性的影响。

Cation composition effects on oxide conductivity in the Zr(2)Y(2)O(7)-Y(3)NbO(7) system.

作者信息

Marrocchelli Dario, Madden Paul A, Norberg Stefan T, Hull Stephen

机构信息

School of Chemistry, University of Edinburgh, Edinburgh EH9 3JJ, UK.

出版信息

J Phys Condens Matter. 2009 Oct 7;21(40):405403. doi: 10.1088/0953-8984/21/40/405403. Epub 2009 Sep 8.

Abstract

Polarizable interaction potentials, parametrized using ab initio electronic structure calculations, have been used in molecular dynamics simulations to study the effect of cation composition on the ionic conductivity in the Zr(2)Y(2)O(7)-Y(3)NbO(7) system and to link the dynamical properties to the degree of lattice disorder. Across the composition range, this system retains a disordered fluorite crystal structure and the vacancy concentration is constant. The observed trends of decreasing conductivity and increasing disorder with increasing Nb(5+) content were reproduced in simulations with the cations randomly assigned to positions on the cation sublattice. The trends were traced to the influences of the cation charges and relative sizes and their effect on vacancy ordering by carrying out additional calculations in which, for example, the charges of the cations were equalized. The simulations did not, however, reproduce all of the observed properties, particularly for Y(3)NbO(7). Its conductivity was significantly overestimated and prominent diffuse scattering features observed in small area electron diffraction studies were not always reproduced. Consideration of these deficiencies led to a preliminary attempt to characterize the consequence of partially ordering the cations on their lattice, which significantly affects the propensity for vacancy ordering. The extent and consequences of cation ordering seem to be much less pronounced on the Zr(2)Y(2)O(7) side of the composition range.

摘要

使用从头算电子结构计算参数化的可极化相互作用势,已用于分子动力学模拟,以研究阳离子组成对Zr(2)Y(2)O(7)-Y(3)NbO(7)体系中离子电导率的影响,并将动力学性质与晶格无序程度联系起来。在整个组成范围内,该体系保持无序萤石晶体结构,空位浓度恒定。在阳离子随机分配到阳离子亚晶格位置的模拟中,再现了随着Nb(5+)含量增加电导率降低和无序度增加的观察趋势。通过进行额外的计算,例如使阳离子电荷相等,将这些趋势追溯到阳离子电荷和相对尺寸的影响及其对空位有序化的作用。然而,模拟并未再现所有观察到的性质,特别是对于Y(3)NbO(7)。其电导率被显著高估,并且在小面积电子衍射研究中观察到的突出的漫散射特征并不总是能再现。对这些不足的考虑导致了初步尝试,以表征阳离子在其晶格上部分有序化的后果,这显著影响了空位有序化的倾向。在组成范围的Zr(2)Y(2)O(7)一侧,阳离子有序化的程度和后果似乎要弱得多。

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