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钇稳定氧化锆二维纳米薄膜室温庞氧离子电导特性研究

Strain effect on colossal oxygen ionic conductivity in nanoscale zirconia electrolytes: A first-principles-based study

中文摘要英文摘要

采用第一性原理计算,研究了三明治结构中晶格失配应变与二维纳米薄膜室温庞氧离子电导现象之间的关系。对KTaO3/YSZ/KTaO3三明治结构而言,9.7 %的晶格失配应变改变了YSZ薄膜中氧离子的分布,使氧离子迁移路径从原先的直线型转变为折线型,同时氧离子的跃迁势垒降低了0.2 eV。过渡态搜索理论计算表明,由于结构应变的存在,YSZ薄膜中存在氧离子高速跃迁通道。FPMD计算表明,9.7 %晶格失配应变下YSZ薄膜中氧离子跃迁势垒为0.33 eV。与体相氧化锆相比,其氧离子电导率在500 K温度下提高了8个数量级。研究还发现,YSZ薄膜中氧离子跃迁势垒高度与晶格失配度之间呈近似线性关系。

ensity functional theory calculations and first-principles molecular dynamics (MD) simulations have been performed to examine the strain effect on the colossal oxygen ionic conductivity in selected sandwich structures of zirconia electrolytes. For the KTaO3/YSZ/KTaO3 sandwich structure with 9.7% lattice mismatch, transition state calculations indicate that the strain effect changes the oxygen migration pathways from straight line into zigzag form and reduces the energy barrier by 0.2 eV. On the basis of our computational results, a possible oxygen ion diffusion highway is suggested. By finite-temperature MD simulations, an activation barrier of 0.33 eV is obtained, corresponding to an oxygen ionic conductivity which is 6.4×107 times higher than that of the unstrained bulk zirconia at 500 K. A nearly linear relationship is identified between the energy barrier and the lattice mismatch in the sandwich structures.

Don E. Ellis、陆瑞锋、吴海平、阚二军、邓开明、肖传云、李峰

物理学材料科学晶体学

材料科学与工程氧离子电导氧化锆电解质三明治结构第一性原理计算

Materials scienceionic conductivityzirconia electrolytessandwich structuresfirst-principles calucations

Don E. Ellis,陆瑞锋,吴海平,阚二军,邓开明,肖传云,李峰.钇稳定氧化锆二维纳米薄膜室温庞氧离子电导特性研究[EB/OL].(2014-05-22)[2025-08-21].http://www.paper.edu.cn/releasepaper/content/201405-378.点此复制

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