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首页> 外文期刊>International journal of hydrogen energy >First-principles investigation of phonon dynamics and electrochemical performance of TiO_(2-x) oxides lithium-ion batteries
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First-principles investigation of phonon dynamics and electrochemical performance of TiO_(2-x) oxides lithium-ion batteries

机译:TiO_(2-x)氧化物锂离子电池的声子动力学和电化学性能的第一性原理研究

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Compared to titanium oxide(TiO2), non-equilibrium stoichiometry titanium oxides(TiO2-x) are promising electrode materials because oxygen vacancy changes the electronic interaction near E-F. However, the structural configuration of Ti3O5 (alpha-Ti3O5 and beta-Ti3O5) remains considerable controversy. In particular, the electrochemical performance of TiO2-x is entirely unclear. By means of first-principles calculations, we present the results of structure, average open circuit voltage (Vac) and electronic structure of Ti3O5 and Ti2O3, respectively. We find that our predicted Ti3O5(C2/c) monoclinic structure is more stable than (1-Ti3O5 and beta-Ti3O5 because of the cohesive force between layered-layered structure. We demonstrate that alpha-Ti3O5 and beta-Ti3O5 are dynamically instable due to the vibration of the O and Ti at the low frequency region. Importantly, we firstly predict a novel Ti3O5(C2/c) monoclinic structure. Compared to TiO2, Ti3O5 and Ti2O3 exhibit metallic behavior because Ti-3d and O-2p bands across E-F. In particular, the calculated V-oc of Ti3O5 (C2/c) monoclinic structure (3.416 V) is much larger than that of the alpha-Ti3O5 (1.809 V), beta-Ti3O5 (1.454 V) and Ti2O3 (2.255 V) due to the two O sub-boundary layers. We believe that our work opens a new opportunity for developing the titanium oxide as application of lithium ion batteries. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:与二氧化钛(TiO2)相比,非平衡化学计量二氧化钛(TiO2-x)是有前途的电极材料,因为氧空位改变了E-F附近的电子相互作用。但是,Ti3O5的结构构型(α-Ti3O5和β-Ti3O5)仍然存在很大争议。特别地,TiO2-x的电化学性能完全不清楚。通过第一性原理计算,我们分别给出了Ti3O5和Ti2O3的结构,平均开路电压(Vac)和电子结构的结果。我们发现,由于层状结构之间的内聚力,我们预测的Ti3O5(C2 / c)单斜晶结构比(1-Ti3O5和β-Ti3O5)更加稳定。重要的是,我们首先预测了一种新颖的Ti3O5(C2 / c)单斜晶结构,与TiO2相比,Ti3O5和Ti2O3表现出金属行为,因为Ti-3d和O-2p谱带贯穿EF。特别是,计算得出的Ti3O5(C2 / c)单斜晶结构的V-oc(3.416 V)远大于α-Ti3O5(1.809 V),β-Ti3O5(1.454 V)和Ti2O3(2.255 V) )(由于两个O子边界层),我们相信我们的工作为开发锂离子电池应用的二氧化钛提供了新的机会(C)2020 Hydrogen Energy Publications LLC,由Elsevier Ltd.保留所有权利。

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