论文标题

水合y掺杂的bazro $ _3 $中的局部扭曲和动态

Local distortions and dynamics in hydrated Y-doped BaZrO$_3$

论文作者

Torayev, Amangeldi, Sperrin, Luke, Gomez, Maria A., Kattirtzi, John A., Merlet, Céline, Grey, Clare P.

论文摘要

y掺杂的bazro $ _3 $是用于中等温度固体氧化物燃料电池的有前途的质子导体。在这项工作中,使用静态DFT计算和基于DFT的分子动力学(DFT-MD)的组合来研究这种材料中的质子传导。掺杂剂浓度为12.5%的100个结构的几何优化使我们能够确定金属 - 氧 - 金属角的弯曲与模拟细胞的能量之间的明显相关性。根据弯曲的类型,定义了两种指定为内向弯曲和向外弯曲的配置。结果表明,较大的弯曲会降低能量,并且观察到最低的能量对于将内向弯曲与质子靠近掺杂剂原子相结合的结构。这些最低的能量结构是具有最强氢键的最低能量结构。具有不同YTTrium分布的细胞中的DFT-MD模拟提供了有关质子扩散的互补微观信息,因为它们捕获了由热运动引起的晶格的动态畸变。对不同环境之间质子跳跃的仔细分析证实,弯曲状态与对质子扩散的理解有关。实际上,表现出二十个体内的跳跃仅是从向外构型开始的,而内向配置似乎有利于围绕氧气旋转。平均而言,在DFT-MD模拟中,氢键的长度对于外观构型的较短,促进了左右的跳跃。还确定了扩散系数和激活能,并将其与以前的理论和实验数据进行了比较,该数据与以前与局部质子运动相对应的数据有良好的一致性。

Y-doped BaZrO$_3$ is a promising proton conductor for intermediate temperature solid oxide fuel cells. In this work, a combination of static DFT calculations and DFT based molecular dynamics (DFT-MD) was used to study proton conduction in such a material. Geometry optimisations of 100 structures with a 12.5% dopant concentration allowed us to identify a clear correlation between the bending of the metal-oxygen-metal angle and the energies of the simulated cells. Depending on the type of bending, two configurations, designated as inwards bending and outwards bending, were defined. The results demonstrate that a larger bending decreases the energy and that the lowest energies are observed for structures combining inwards bending with protons being close to the dopant atoms. These lowest energy structures are the ones with the strongest hydrogen bonds. DFT-MD simulations in cells with different yttrium distributions provide complementary microscopic information on proton diffusion as they capture the dynamic distortions of the lattice caused by thermal motion. A careful analysis of the proton jumps between different environments confirmed that the inwards and outwards bending states are relevant for the understanding of proton diffusion. Indeed, intra-octahedral jumps were shown to only occur starting from an outwards configuration while the inwards configuration seems to favor rotations around the oxygen. On average, in the DFT-MD simulations, the hydrogen bond lengths are shorter for the outwards configuration which facilitates the intraoctahedral jumps. Diffusion coefficients and activation energies were also determined and compared to previous theoretical and experimental data showing a good agreement with previous data corresponding to local proton motion.

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