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First-principles modeling of interfaces between solids with large lattice mismatch: The prototypical CoO(111)/Ni(111) interface

机译:具有大晶格失配的固体之间的界面的第一性原理建模:原型CoO(111)/ Ni(111)界面

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In this work we investigate the CoO(111)/Ni(111) interface by first-principles calculations, focusing on its structure and stability. To satisfy the approximate 5:6 ratio of the CoO and Ni lattice constants, we construct a supercell with 5×5 Co (O) and 6×6 Ni atoms per layer in the bulk regions. For the interface Ni layer and the adjacent Ni layer we consider different configurations and study the binding energy. We show for an ideal CoO interface terminated by 5× 5 O atoms that the structure is more stable if there are 5×5 Ni atoms next to it instead of 6×6 as in the bulk. In addition, we observe that a transition layer with 31 or 33 Ni atoms located between the interface 5×5 Ni and bulk 6×6 Ni layers (which partially reflects the structures of both these layers) enhances the stability of the CoO/Ni interface. The electronic and magnetic modifications induced by the interface formation are discussed.
机译:在这项工作中,我们通过第一性原理计算研究了CoO(111)/ Ni(111)界面,重点是其结构和稳定性。为了满足CoO和Ni晶格常数的大约5:6的比率,我们构建了一个在主体区域中每层具有5×5 Co(O)和6×6 Ni原子的超级电池。对于界面镍层和相邻的镍层,我们考虑不同的构型并研究结合能。我们显示了一个理想的CoO界面,该界面以5×5 O原子终止,如果旁边有5×5 Ni原子而不是6×6,那么结构会更稳定。此外,我们观察到,在界面5×5 Ni和块体6×6 Ni层之间(部分反映了这两个层的结构),具有31或33个Ni原子的过渡层提高了CoO / Ni界面的稳定性。讨论了由界面形成引起的电子和磁性修饰。

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