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钙钛锆矿(CaZrTi2O7)在高压下的结构相变和无序化。

Structural transformations and disordering in zirconolite (CaZrTi2O7) at high pressure.

机构信息

European Synchrotron Radiation Facility, BP 220, 38043 Grenoble, Cedex 9, France.

出版信息

Inorg Chem. 2013 Feb 4;52(3):1550-8. doi: 10.1021/ic302346g. Epub 2013 Jan 22.

Abstract

There is interest in identifying novel materials for use in radioactive waste applications and studying their behavior under high pressure conditions. The mineral zirconolite (CaZrTi(2)O(7)) exists naturally in trace amounts in diamond-bearing deep-seated metamorphic/igneous environments, and it is also identified as a potential ceramic phase for radionuclide sequestration. However, it has been shown to undergo radiation-induced metamictization resulting in amorphous forms. In this study we probed the high pressure structural properties of this pyrochlore-like structure to study its phase transformations and possible amorphization behavior. Combined synchrotron X-ray diffraction and Raman spectroscopy studies reveal a series of high pressure phase transformations. Starting from the ambient pressure monoclinic structure, an intermediate phase with P2(1)/m symmetry is produced above 15.6 GPa via a first order transformation resulting in a wide coexistence range. Upon compression to above 56 GPa a disordered metastable phase III with a cotunnite-related structure appears that is recoverable to ambient conditions. We examine the similarity between the zirconolite behavior and the structural evolution of analogous pyrochlore systems under pressure.

摘要

人们对寻找新型材料应用于放射性废物处理并研究其在高压条件下的行为很感兴趣。钙钛锆矿(CaZrTi(2)O(7))在自然界中以微量形式存在于含金刚石的深部变质/火成环境中,也被认为是一种潜在的放射性核素隔离用陶瓷相。然而,它已经被证明会发生辐射诱导的非晶化,导致形成非晶态。在这项研究中,我们探测了这种烧绿石类似结构的高压结构特性,以研究其相变和可能的非晶化行为。结合同步加速器 X 射线衍射和拉曼光谱研究揭示了一系列高压相变。从常压单斜结构开始,在 15.6 GPa 以上通过一级相变产生具有 P2(1)/m 对称的中间相,导致宽共存范围。在压缩到 56 GPa 以上时,出现具有类似钙钛矿结构的无序亚稳相 III,该相在恢复到环境条件时是可恢复的。我们研究了锆石矿在高压下的行为与类似烧绿石系统结构演化之间的相似性。

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