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首页> 外文期刊>Solid state ionics >Calculation of proton conductivity at the Sigma 3(111)/[1(1)over-bar0] tilt grain boundary of barium zirconate using density functional theory
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Calculation of proton conductivity at the Sigma 3(111)/[1(1)over-bar0] tilt grain boundary of barium zirconate using density functional theory

机译:使用密度泛函理论计算锆酸钡的Sigma 3(111)/ [1(1)over-bar0]倾斜晶界处的质子电导率

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We theoretically investigate proton conductivity at the Sigma 3 (111)/[1 (1) over bar0] tilt grain boundary of barium zirconate using density functional theory. In order to evaluate the space charge layer model and the structural disorder model, segregation energies of a +1-charged proton and a +2-charged oxygen vacancy, as well as energy barriers for proton migration, are calculated. The effect of the proton concentration on its segregation is verified and it is found that the segregation energy decreases with increases in the concentration. With consideration of this effect, the segregation energies of the proton and oxygen vacancy are in the range of -0.35 to -0.60 and -0.57 to -0.65 eV, respectively. Based on the segregation energies, an electrostatic potential of 0.51 Vat 600 K is obtained through numerically solving Poisson's equation. An energy barrier range of 0.71-0.95 eV is required for the proton to migrate across the grain boundary core. The proton concentration and mobility that are obtained from the electrostatic potential and energy barrier are used to calculate the proton conductivities in the bulk and at the grain boundary. The calculated proton conductivities are consistent with the experimentally measured proton conductivities in the bulk and at the grain boundaries of barium zirconate. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们使用密度泛函理论从理论上研究了锆酸钡bar0]倾斜晶界上Sigma 3(111)/ [1(1)上的质子传导率。为了评估空间电荷层模型和结构无序模型,计算了+1电荷的质子和+2电荷的氧空位的偏析能以及质子迁移的能垒。证实了质子浓度对其离析的影响,并且发现离析能随浓度的增加而降低。考虑到该影响,质子和氧空位的偏析能分别在-0.35至-0.60和-0.57至-0.65eV的范围内。根据偏析能,通过数值求解泊松方程获得0.51 Vat 600 K的静电势。质子穿过晶界核迁移需要0.71-0.95 eV的能垒范围。从静电势和能垒获得的质子浓度和迁移率可用于计算块体内和晶界处的质子电导率。计算出的质子电导率与锆酸钡的整体和晶界处的实验测得的质子电导率一致。 (C)2015 Elsevier B.V.保留所有权利。

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