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Electronic structure of Li2O2 {0001} surfaces

机译:Li2 O2 {0001}表面的电子结构

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摘要

The surface properties of the Li2O2 discharge phase are expected to impact strongly the capacity, rate capability, and rechargeability of Li-oxygen batteries. Prior calculations have suggested that the presence of half-metallic surface states in Li2O2 may mitigate electrical passivation resulting from the growth of Li2O2, which is a bulk insulator. Here we revisit the electronic structure of bulk Li2O2 and the dominant Li2O2 {0001} surface by comparing results obtained with the PBE GGA functional, the HSE06 hybrid functional, and quasiparticle GW methods. Our results suggest that the bulk band gap lies between the value predicted by the G0W0 method, 5.15 eV, and the value predicted by the self-consistent quasiparticle GW (scGW) approximation, 6.37 eV. The PBE, HSE06, and scGW methods agree that the most stable surface, an oxygen-rich {0001} termination, is indeed half-metallic. This result supports the notion that the electronic structure of surfaces may play an important role in understanding performance limitations in Li-oxygen batteries.
机译:预计Li2 O2 放电相的表面性质会严重影响锂氧电池的容量,倍率能力和可充电性。先前的计算表明,Li2 O2 中存在半金属表面态可能会减轻由于作为整体绝缘子的Li2 O2 的生长而导致的电钝化。在这里,我们通过比较与PBE GGA官能团,HSE06杂合官能团获得的结果,来重新研究大块Li2 O2 和主要Li2 O2 {0001}表面的电子结构。和准粒子GW方法。我们的结果表明,体带隙介于G0 W0 方法预测的值5.15 eV和自洽准粒子GW(scGW)近似值预测的值6.37 eV之间。 PBE,HSE06和scGW方法一致认为,最稳定的表面(富氧的{0001}端接)确实是半金属的。该结果支持这样的观念,即表面的电子结构可能在理解锂氧电池的性能限制中起重要作用。

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  • 来源
    《Journal of Materials Science》 |2012年第21期|p.7564-7570|共7页
  • 作者单位

    Department of Physics, University of Michigan, Ann Arbor, MI, 48109-2125, USA;

    Department of Mechanical Engineering, University of Michigan, Ann Arbor, MI, 48109-2125, USA;

    Department of Mechanical Engineering, University of Michigan, Ann Arbor, MI, 48109-2125, USA;

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