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Migration and Interaction of Multi-protons in Zinc-doped Barium Zirconate

机译:锌掺杂锆酸钡中多质子的迁移和相互作用

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摘要

Migration and interaction of multi-protons in a zinc-doped barium zirconate (Zn-doped BaZrO_3) super cell were investigated using a density functional theory. O ions in the super cell form interconnected octahedrons with Zr or Zn ions positioned in their centers and Ba ions positioned among the eight octahedrons. When one proton was added to the super cell, the energy barrier of 0.80 eV for proton transfer from the first to second nearest O ion sites from the Zn ion reached its highest value. When two protons were added to the super cell, the two protons preferred the first nearest 0 ions from the Zn ion. The two protons were accommodated by pushing the neighboring Zn ion further away from the center of the octahedron. Energy barriers for proton transfer from the Zn-octahedron to the neighboring Zr-octahedron were spread in the range of 0.36 ~ 1.02 eV.
机译:利用密度泛函理论研究了锌掺杂锆酸钡(Zn掺杂BaZrO_3)超级电池中多质子的迁移和相互作用。超级电池中的O离子形成互连的八面体,Zr或Zn离子位于其中心,Ba离子位于八个八面体之间。当将一个质子添加到超级电池中时,质子从Zn离子的第一到第二个O离子位置转移到0.80 eV的能垒达到了最高值。当将两个质子添加到超级电池中时,这两个质子优先于Zn离子中最接近的0个离子。通过将邻近的Zn离子推离八面体的中心,可以容纳两个质子。质子从Zn八面体转移到相邻的Zr八面体的能垒分布在0.36〜1.02 eV的范围内。

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