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Sodium-intercalated bulk graphdiyne as an anode material for rechargeable batteries

机译:钠嵌入的大块石墨烯作为可充电电池的阳极材料

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摘要

We present the results of a density functional theory study of sodium storage and mobility on graphdiyne (GDY) and consider the applicability of GDY intercalated with sodium (Na) as an anode material for rechargeable batteries. The maximum capacity, energy barriers for Na diffusion throughout the layers, and expansion of the layers due to Na insertion are determined. The calculations indicate that Na intercalates within the GDY bulk layers with a capacity of NaC5.14 without expansion (316 mA h g(-1)) and NaC2.57 with expansion of 28% (497 mA h g(-1)). The energy barrier for movement of Na in the slit pore formed by two GDY bulk layers is found to be 0.82 eV for bulk GDY with an AB-2 stacking, and the barrier for movement through a GDY sheet is found to be 0.12 eV. The barrier for movement in the slit pore formed by sheets becomes even lower for AB-3 stacking, with values of 0.68 and 0.40 eV found for different pathways. Movement from one GDY sheet to another for the AB-3 stacking also has a moderate energy of 037 eV. Therefore, GDY intercalated with Na is proposed to have potential as an anode material for rechargeable batteries. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们提出的存储钠和移动性上graphdiyne(GDY)一个密度泛函理论研究的结果,并考虑GDY的适用性与嵌入钠(Na)作为用于可充电电池的阳极材料。最大容量,在整个层的Na扩散,和所述层的膨胀由于Na插入能垒被确定。计算表明,用NaC5.14的容量GDY本体层中的Na插层不膨胀(316毫安ħ克(-1))和NaC2.57具有28%的膨胀(497毫安ħ克(-1))。用于在由两个GDY散装层形成的狭缝孔的Na的运动的能量势垒被发现是0.82 eV的用于与AB-2堆叠散装GDY,并通过一个GDY片用于移动的屏障被发现是0.12 eV的。用于在由片材形成的狭缝孔移动屏障成为AB-3堆叠甚至更低,以电子伏特发现不同途径的0.68和0.40的值。从一个GDY片到另一个为AB-3还堆叠运动具有037伏特的中等能量。因此,嵌入GDY用Na提议具有作为用于可充电电池的阳极材料。 (c)2017年Elsevier B.V.保留所有权利。

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