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The effect of octahedral tilting on proton binding sites and transition states in pseudo-cubic perovskite oxides

机译:八面体倾斜对拟立方钙钛矿氧化物中质子结合位点和过渡态的影响

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Proton conducting oxide ceramics have shown potential for use in fuel cell technologies.Understanding the energy pathways for proton conduction could help us design more efficient fuel cell materials.This paper describes how octahedral tilting affects the relative energies of proton binding sites,transition states,and conduction pathways in cubic and pseudo-cubic perovskites.First,the structure for cubic and pseudo-cubic forms of BaTiO_3,BaZrO_3,CaTiO_3,and CaZrO_3,is found.Even when cubic symmetry is enforced,CaTiO_3,and CaZrO_3 exhibit octahedral tilting distortions characteristic of orthorhombic phases while BaTiO_3 and BaZrO_3 remain undistorted.Octahedral tilting gives rise to proton binding sites facilitating inter-and intra-octahedral proton transfer while the proton binding sites of undistorted perovskites facilitate only intra-octahedral proton transfer.The nudged elastic band method is used to find minimum energy paths between the proton binding sites.As distortions increase,inter-octahedral proton transfer barriers decrease while intra-octahedral proton transfer barriers increase.Concurrently,rotational barriers from oxygens facilitating inter-octahedral proton transfer increase while rotational barriers from oxygens facilitating intra-octahedral proton transfer decrease.Intra-octahedral transfer is the rate-limiting step to the lowest energy extended proton conduction pathway in all the perovskites considered.
机译:质子传导氧化物陶瓷已显示出在燃料电池技术中的潜力。了解质子传导的能量途径可以帮助我们设计更高效的燃料电池材料。本文介绍八面体倾斜如何影响质子结合位点,过渡态和立方和准立方钙钛矿中的导电路径BaTiO_3和BaZrO_3保持不变形的正交相相。八面体倾斜产生质子结合位点,促进质子间和八面体内的质子转移,而未畸变钙钛矿的质子结合位点仅促进八面体内的质子转移。寻找质子结合位点之间的最小能量路径。随着畸变的增加,八面体之间的质子传递势垒减小,而八面体内部的质子传递势垒增加。在所有考虑的钙钛矿中限制了最低能量扩展质子传导路径的步骤。

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