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Oxygen Evolution Reaction on Perovskite Electrocatalysts with Localized Spins and Orbital Rotation Symmetry

机译:用局部旋转和轨道旋转对称对钙钛矿电催化剂的氧气进化反应

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摘要

We have studied, by using ab initio calculations, the electronic properties of electro-catalysts for the oxygen evolution reaction (OER) with polarised density of states caused by localised spins in the d shell. Oxygen is a molecule in the triplet state (i. e., the outer electrons have parallel spins), which means that the spins localised in the p shell (up arrow O=O up arrow), the d shell and the conduction band electrons (t(2g)(n)e(g)(m)) will couple through exchange interactions, which we think will provide favourable conditions for the OER. We compare the perovskites CaCu3Fe4O12 (CCF) and Ba0.5Sr0.5Co0.8Fe0.2O3-delta (BSCF) with RuO2. CCF and BSCF both have fluctuating electronic structures accessible at room temperature that are linked to conducting spin-polarised density of states, equivalent to the paramagnet-ic state of covalent transition metal oxides with fine charge conductivity. CCF and BSCF both possess a considerable number of unpaired electrons localised in the inner d shell, high-spin configurations and competing inter-atomic exchange interactions. As a first approximation, the average fluctuation of the magnetisation in the metal atoms correlates linearly with the OER onset potential for the studied compositions. By linking the dynamics of the localised inner-electron spins to the conduction spins through exchange interactions, we can predict that other perovskites, such as Sr2Fe0.75Co0.25MoO6, will be OER active at room temperature, as they have similar electronic properties to CCF and BSCF.
机译:通过使用AB Initio计算,通过使用AB Initio计算来研究氧气进化反应(OER)的电催化剂的电子性质,其具有由D壳体中的局部旋转引起的状态的偏振密度。氧气是三重态状态(即,外电子具有平行旋转)的分子,这意味着旋转在P壳体(向上箭头O = O向上箭头),D壳和导带电子(T( 2g)(n)e(g)(m))将通过交换互动来耦合,我们认为将为oer提供有利条件。我们将Perovskites Cacu3Fe4O12(CCF)和BA0.5SR0.5Co0.8Fe0.2O3-Delta(BSCF)与Ruo2进行比较。 CCF和BSCF两者都具有波动的电子结构,在室温下可接近,与传导旋转状态的传导旋转密度相比,相当于具有精细电荷导电性的共价过渡金属氧化物的ParamAgnet-IC状态。 CCF和BSCF均具有相当数量的未配对电子,在内部D壳体,高自由型配置和竞争的原子交换相互作用中。作为第一近似,金属原子中的磁化的平均波动随着所研究组合物的oer发病电位线性地相关。通过将局部内电子旋转的动态连接到导通旋转通过交换相互作用,我们可以预测其他佩洛夫,如SR2FE0.75Co0.25Moo6,将在室温下有效,因为它们对CCF具有类似的电子特性和bscf。

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