热化学
氧气
空位缺陷
离子键合
密度泛函理论
钙钛矿(结构)
材料科学
氧化物
热的
化学
化学物理
物理化学
热力学
计算化学
结晶学
离子
物理
冶金
有机化学
作者
Krishna K. Ghose,Yun Liu,Terry J. Frankcombe
出处
期刊:JPhys energy
[IOP Publishing]
日期:2023-11-10
卷期号:6 (1): 015007-015007
被引量:1
标识
DOI:10.1088/2515-7655/ad0b8a
摘要
Abstract Cubic SrVO 3 perovskite oxide is an attractive candidate for high-temperature energy applications due to its favorable features such as multiple oxidation state cations, high structural and thermal stabilities, ability to accommodate a large number of oxygen vacancies, and cost-effectiveness. Herein, the temperature-dependent reduction properties of SrVO 3 have been studied using accurate first-principles calculations to reveal the effects of oxygen vacancies and temperature on the reduction potential of SrVO 3− δ , δ = 0–0.125. The reduction potential of SrVO 3− δ was found to be significantly impacted by increasing oxygen vacancy concentration and temperature. Analysis of the electronic and vibrational properties of SrVO 3− δ for differing δ revealed the origin of this reduction behavior. The electronic structure analysis shows that the reduction of SrVO 3− δ upon oxygen vacancy formation is highly localized to the neighboring V 4+ t 2g states in the vicinity of the oxygen defect, irrespective of δ . A comparison of the vibrational density of states of defect-free and reduced SrVO 3 demonstrated that the ionic contributions to the phonon density of states, and hence to the thermal contributions to the SrVO 3− δ lattices, were significantly altered by the introduction of oxygen vacancies, which ultimately impacted the temperature-dependent reduction behavior of SrVO 3− δ .
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