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First principles study of electrocatalytic behavior of olivine phosphates with mixed alkali and mixed transition metal atoms

机译:混合碱和混合过渡金属原子的橄榄石磷酸盐电催化作用的第一原理研究

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Lithium transition metal olivine phosphates are well known Li-ion battery cathode materials, but these materials can also be used as electrocatalyst. Recent experimental studies showed that olivine phosphates with mixed alkali metals (Li and Na) and mixed transition metals (Ni and Fe) provide better electrocatalytic activity compared to single alkali and transition metal alternatives. In the current work, we analyzed the role of alkali metals, transition metals and vacancies on the reactivity of a series of olivine phosphates with different stoichiometries using first principles calculations. To this end, we investigated the adsorption of water at the surface of these materials. We found that water binds preferably at Ni surface sites for materials devoid of alkali ion vacancies. We further found correlation between the calculated adsorption energy with experimentally measured overpotentials for a series of olivine phosphates. Additionally, we found correlation between the adsorption energy of the systems with the total charge polarization of surface and adsorbate. To explain the computed trends, we analyzed the occupancies of the partial density of states of the Ni and Fe 3d states and Bader atomic charges.
机译:锂过渡金属橄榄石磷酸盐是公知的锂离子电池阴极材料,但这些材料也可用作电催化剂。最近的实验研究表明,与单碱和过渡金属替代品相比,具有混合碱金属(Li和Na)和混合过渡金属(Ni和Fe)的橄榄石磷酸酯提供更好的电催化活性。在目前的工作中,我们分析了碱金属,过渡金属和空位的作用,使用第一个原理计算的不同化学素的一系列橄榄石磷酸酯的反应性。为此,我们研究了这些材料表面的水的吸附。我们发现水优选在Ni表面位点处结合,用于缺乏碱性离子空位的材料。我们进一步发现计算的吸附能与一系列橄榄磷酸盐的实验测量的过电位之间的相关性。另外,我们发现系统的吸附能量与表面和吸附剂的总电荷极化之间的相关性。为了解释计算的趋势,我们分析了NI和FE 3D状态和庞大原子指控的州部分密度的占用。

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