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首页> 外文期刊>The Journal of Chemical Physics >Oxygen transport in off-stoichiometric uranium dioxide mediated by defect clustering dynamics
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Oxygen transport in off-stoichiometric uranium dioxide mediated by defect clustering dynamics

机译:缺陷簇动力学介导的非化学计量二氧化铀中的氧气迁移

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摘要

Oxygen transport is central to many properties of oxides such as stoichiometric changes, phase transformation, and ionic conductivity. In this paper, we report a mechanism for oxygen transport in uranium dioxide (UO2) in which the kinetics is mediated by defect clustering dynamics. In particular, the kinetic Monte Carlo method has been used to investigate the kinetics of oxygen transport in UO2 under the condition of creation and annihilation of oxygen vacancies and interstitials as well as oxygen interstitial clustering, with variable off-stoichiometry and temperature conditions. It is found that in hypo-stoichiometric UO2-x, oxygen transport is well described by the vacancy diffusion mechanism while in hyper-stoichiometric UO2+x, oxygen interstitial cluster diffusion contributes significantly to oxygen transport kinetics, particularly at high temperatures and high off-stoichiometry levels. It is also found that di-interstitial clusters and single interstitials play dominant roles in oxygen diffusion while other larger clusters have negligible contributions. However, the formation, coalescence, and dissociation of these larger clusters indirectly affects the overall oxygen diffusion due to their interactions with mono and di-interstitials, thus providing an explanation of the experimental observation of saturation or even drop of oxygen diffusivity at high off-stoichiometry. (C) 2015 AIP Publishing LLC.
机译:氧的传输对于氧化物的许多特性(如化学计量变化,相变和离子电导率)至关重要。在本文中,我们报告了氧气在二氧化铀(UO2)中传输的机制,其中动力学是由缺陷簇动力学来介导的。特别是,动力学蒙特卡罗方法已用于研究在氧空位和间隙的产生和an灭以及氧间隙聚集的情况下,在可变的非化学计量比和温度条件下,UO2中的氧输送动力学。发现在低化学计量比的UO2-x中,氧的运移由空位扩散机制很好地描述,而在高化学计量比的UO2 + x中,氧间隙团簇的扩散对氧的输送动力学有显着贡献,特别是在高温和高脱氧下化学计量水平。还发现双间隙簇和单个间隙在氧扩散中起主要作用,而其他较大的簇则贡献不大。然而,这些较大的团簇的形成,聚结和解离由于它们与单间隙和双间隙的相互作用而间接影响了整体的氧扩散,从而为实验观察到的在高偏离量下氧扩散率的饱和甚至下降提供了解释。化学计量。 (C)2015 AIP Publishing LLC。

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