Wang Jianwei, Ewing Rodney C, Becker Udo
1] Department of Geology and Geophysics, Center for Computation and Technology, Louisiana State University, Baton Rouge, Louisiana 70803-0001, USA [2] Department of Earth and Environmental Sciences, University of Michigan, Ann Arbor, Michigan 48109-1005, USA.
1] Department of Geological and Environmental Sciences, Stanford University Stanford, California 94305-2115, USA [2] Department of Earth and Environmental Sciences, University of Michigan, Ann Arbor, Michigan 48109-1005, USA.
Sci Rep. 2014 Mar 19;4:4216. doi: 10.1038/srep04216.
Determination of the local configuration of interacting defects in a crystalline, periodic solid is problematic because defects typically do not have a long-range periodicity. Uranium dioxide, the primary fuel for fission reactors, exists in hyperstoichiometric form, UO(2+x). Those excess oxygen atoms occur as interstitial defects, and these defects are not random but rather partially ordered. The widely-accepted model to date, the Willis cluster based on neutron diffraction, cannot be reconciled with the first-principles molecular dynamics simulations present here. We demonstrate that the Willis cluster is a fair representation of the numerical ratio of different interstitial O atoms; however, the model does not represent the actual local configuration. The simulations show that the average structure of UO(2+x) involves a combination of defect structures including split di-interstitial, di-interstitial, mono-interstitial, and the Willis cluster, and the latter is a transition state that provides for the fast diffusion of the defect cluster. The results provide new insights in differentiating the average structure from the local configuration of defects in a solid and the transport properties of UO(2+x).
确定晶体周期性固体中相互作用缺陷的局部构型存在问题,因为缺陷通常不具有长程周期性。二氧化铀是裂变反应堆的主要燃料,以超化学计量形式UO(2+x)存在。那些多余的氧原子以间隙缺陷的形式出现,并且这些缺陷不是随机的,而是部分有序的。迄今为止广泛接受的模型,即基于中子衍射的威利斯团簇,与本文中的第一性原理分子动力学模拟结果不一致。我们证明,威利斯团簇能合理表示不同间隙氧原子的数值比例;然而,该模型并不代表实际的局部构型。模拟表明,UO(2+x)的平均结构涉及多种缺陷结构的组合,包括分裂双间隙、双间隙、单间隙和威利斯团簇,而后者是一种过渡态,它使得缺陷团簇能够快速扩散。这些结果为区分固体中缺陷的平均结构与局部构型以及UO(2+x)的输运性质提供了新的见解。