首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >First-Principles Insight into the Hydration Ability and Proton Conduction of the Solid State Proton Conductor, Y and Sn Co-Doped BaZrO3
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First-Principles Insight into the Hydration Ability and Proton Conduction of the Solid State Proton Conductor, Y and Sn Co-Doped BaZrO3

机译:第一性原理对固态质子导体,Y和Sn共掺杂BaZrO3的水化能力和质子传导的了解

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Y and Sn co-doped BaZrO3 (BZSY) has recently been shown to exhibit superior hydration ability and improved power output performance compared to those of the traditional solid oxide fuel cell (SOFC) electrolyte, Y-doped BaZrO3. The fact that BZSY is also chemically stable in both H2O and CO2 atmospheres further illustrates the great potential for BZSY as a future electrolyte material in proton-conducting SOFCs. In this work, we conducted comprehensive density functional theory calculations to analyze the energetics of hydration and proton migration in BZSY. The energy of hydration is calculated at four different locations in the cell to better assess the specific contributions of each defect type. For all locations tested, hydration is found to be strongly exothermic and is most favorable when Y ions are in the vicinity. The calculated energies of hydration (-1.72 to -1.11 eV) are significantly lower than any previously calculated for acceptor-doped BaZrO3-based electrolytes. Nudged elastic band calculations confirm low proton reorientation energies (0.080.24 eV) and low intraoctahedral hopping energies (0.210.41 eV) and that these diffusion barriers are at minimum when the proton is migrating to an oxygen ion in a YO6 octahedron. Our results show how the synergy of the Sn and Y dopant ions produces the excellent hydration and conduction performance of BZSY and fully support its potential application in next-generation SOFCs.
机译:与传统的固体氧化物燃料电池(SOFC)电解质,掺Y的BaZrO3相比,Y和Sn共掺杂的BaZrO3(BZSY)最近显示出优异的水合能力和改进的功率输出性能。 BZSY在H2O和CO2气氛中也具有化学稳定性,这一事实进一步说明了BZSY作为质子传导型SOFC的未来电解质材料的巨大潜力。在这项工作中,我们进行了全面的密度泛函理论计算,以分析BZSY中水化和质子迁移的能量学。在电池中的四个不同位置计算水合能量,以更好地评估每种缺陷类型的特定作用。对于所有测试的位置,发现水合作用都是强烈放热的,并且当Y离子在附近时最有利。计算得出的水合能量(-1.72至-1.11 eV)显着低于先前对受主掺杂的BaZrO3基电解质的计算值。轻推的弹性带计算确认了低质子重取向能(0.080.24 eV)和低八面体内跳跃能(0.210.41 eV),并且当质子迁移到YO6八面体中的氧离子时,这些扩散势垒最小。我们的结果表明,Sn和Y掺杂离子的协同作用如何产生BZSY的出色水化和导电性能,并完全支持其在下一代SOFC中的潜在应用。

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