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Influence of Ce3+ polarons on grain boundary space-charge in proton conducting Y-doped BaCeO3

机译:CE3 +极化子对y掺杂Baceo3的质子晶界空间电荷的影响

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摘要

Defect segregation and space-charge formation were investigated for a (0 2 1)[1 0 0] symmetric tilt grain boundary in Y-doped BaCeO3. Density functional theory calculations according to the PBE+U formalism were used to calculate segregation energies for protons, oxygen vacancies and Y-acceptor dopants from the bulk to the grain boundary core. Defect concentration and potential profiles across the grain boundary were obtained from thermodynamic space-charge models. Oxygen vacancies were found to exhibit a particularly exothermic segregation energy of up to -1.66 eV while protons exhibited segregation energies in the range of -0.47 eV to -0.93 eV. The grain boundary was determined to be predominated by protons below 800 K in 3% H2O and the corresponding space-charge potential was 0.4-0.7 V under the Mott-Schottky approximation. The role of electronic defects in the space-charge properties was evaluated, and it was substantiated that electron conduction along the grain boundary could become evident under reducing conditions.
机译:研究了Y掺杂BACEO3中的(02 1)[110 0]对称倾斜晶界面研究了缺陷偏析和空间电荷形成。根据PBE + U形状计算的密度函数理论计算用于计算质子,氧空位和y型掺杂剂的分离能量,从块状到晶界核心。从热力学空间 - 电荷模型获得晶粒边界的缺陷浓度和潜在曲线。发现氧空位缺氧缺氧能量高达-1.66eV,而质子在-0.47eV的范围内显示出偏析能量至-0.93eV。确定晶界在3%H 2 O中以低于800k的质子占主导地位,并且在Mott-Schottky近似下,相应的空间电位电位为0.4-0.7V。电子缺陷在空间电荷性质中的作用评估了,证实了沿着晶界的电子传导在还原条件下可能变得明显。

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