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Co-Nb缺陷对Sr2CoxNb2-xO6-δ导电性能影响的第一性原理研究
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清华大学,,清华大学,清华大学,中国矿业大学北京

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国家科技重大专项(2010ZX06901-020);国家自然科学基金(51502153);清华大学自主科研(2013Z02-3)


Influence of Co-Nb Defects on the Conductive Performance ofSr2CoxNb2 - xO6 -δby the First Principles
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Collaborative Innovation Center of Advanced Nuclear Energy Technology,Institute of Nuclear and New Energy Technology,Tsinghua University,State Key Laboratory of New Ceramics and Fine Processing,Tsinghua University,Collaborative Innovation Center of Advanced Nuclear Energy Technology,Institute of Nuclear and New Energy Technology,Tsinghua University,Collaborative Innovation Center of Advanced Nuclear Energy Technology,Institute of Nuclear and New Energy Technology,Tsinghua University,

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    摘要:

    本文中我们选择Sr2CoxNb2-xO6-δ(SCNO)作为电极材料进行了研究。SCNO中Co和Nb具有相近的半径,且共价态差异很小,因此存在本征阳离子无序缺陷。利用第一性原理以及密度泛函理论对SCNO以及存在CoNb-NbCo反占位缺陷的SCNO进行了计算。计算结果表明,GGA-PBE函数在修正情况下能够很好的符合实际实验数据。利用该函数计算对比实验数据,可发现O空位对其导电率起到了至关重要的作用。Co与Nb在其正常位置时,Co为+2,+3,+4价(大部分为+3价,+4价极少),Nb为+4,+5价,位于反占位缺陷位置时,Co为+2价,而Nb为+4价。计算结果显示氧空位形成能量大小排序为:Co3+-O-Nb5+ >Co2+-O-Co3+ > Nb4+-O-Nb5+。并且Co2+-O-Co3+ 与Nb4+-O-Nb5+之间电子位移越多,电子斥力会越弱,而空位稳定性越强。因此可得阳离子无序程度越高,电导率也越高。

    Abstract:

    In this study, we chose Sr2CoxNb2-xO6-δ (SCN) as the electrode materials. Due to the similar radii size and small covalent difference between Co and Nb, cation disorder is intrinsic within this perovskite. A combination of first-principles and density-functional-theory (DFT) calculations was performed on both SCN and SCN with CoNb-NbCo antisite defects, focusing on the formation of bulk oxygen vacancies, which plays a pivotal role in oxygen ion diffusion process. It is found that the covalent states are +2, +3 and +4 for Co(most is +3, and the ratio of +4 is very small ) and +4 and +5 for Nb at their regular sites while in the antisite Co is +2 and Nb is +4. The oxygen vacancies formation energies follow the trend Co3+-O-Nb5+ >Co2+-O-Co3+ > Nb4+-O-Nb5+. The more electron delocalization between Co2+-O-Co3+ and Nb4+-O-Nb5+ is beneficial to weaken the electronic repulsion and stabilize vacancies. Therefore, we can see that higher degree of cation disorder can enhance oxygen ionic conductivity.

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张健,艾德生,林旭平,徐舜,葛奔. Co-Nb缺陷对Sr2CoxNb2-xO6-δ导电性能影响的第一性原理研究[J].稀有金属材料与工程,2018,47(S1):249~253.[Zhang Jian, Ai Desheng, Lin Xuping, Xu Shun, Ge Ben. Influence of Co-Nb Defects on the Conductive Performance ofSr2CoxNb2 - xO6 -δby the First Principles[J]. Rare Metal Materials and Engineering,2018,47(S1):249~253.]
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  • 收稿日期:2017-06-23
  • 最后修改日期:2017-06-23
  • 录用日期:2018-01-29
  • 在线发布日期: 2018-10-22
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