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The Effect of Ion Size on Solution Mechanism and Defect Cluster Geometry

机译:离子尺寸对固溶机理和缺陷簇几何形状的影响

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摘要

Atomistic simulation calculations are used to predict the solution mechanisms and the defect cluster geometries of: M~2+ dopant cations in Y_2O_3, M~3+ dopant cations in CoO and M~2+ dopant cations in SrTiO. The inter- atomic potential parameters were derived by simultaneously fitting the properties of a range of mixed cation ma- terials. The results suggest that although both solution enthalpies and cluster binding energies do scale with ionic radius, the relationships can be quite complex, materials specific and will not necessarily exhibit simple minima when the radius of the host cation equals the dopant cation, as described in previous studies.
机译:原子模拟计算可预测Y_2O_3中的M〜2 +掺杂阳离子,CoO中的M〜3 +掺杂阳离子和SrTiO中的M〜2 +掺杂阳离子的溶解机理和缺陷簇的几何形状。原子间电势参数是通过同时拟合一系列混合阳离子材料的特性得出的。结果表明,尽管溶液的焓和簇结合能都与离子半径成比例,但关系可能非常复杂,特定于材料,并且当主体阳离子的半径等于掺杂剂阳离子时,它们不一定表现出简单的最小值,如前所述。学习。

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