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A DFT study on nanocones, nanotubes (4,0), nanosheets and fullerene C60 as anodes in Mg-ion batteries

机译:纳米酮,纳米管(4,0),纳米片和富勒烯C60的DFT研究作为Mg离子电池中的阳极

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In this article, we studied the interactions between Mg atom and Mg ~(2+) ion and four nanostructures, including a nanocone, nanotube (4,0), nanosheet, and C _(60) nanocage, to obtain the cell voltages ( V ) for Mg-ion batteries (MIBs). Total energy, geometry optimization, frontier molecular orbital (FMO) and density of states (DOS) analyses have been performed using the ωB97XD level of theory and the 6-31G(d) basis set. The DFT calculations clarified that the changes in energy adsorption between Mg ~(2+) ion and the nanostructures, E _(ad) , are in the order tube > cone > sheet > cage. However, V _(cell) for the nanocone is the highest. The changes in V _(cell) of the MIBs are in the order cone > tube > sheet > cage. This study theoretically considers the possibilities of Mg as an anode in batteries due to its high V _(cell) values.
机译:在本文中,我们研究了Mg原子和Mg〜(2+)离子和四个纳米结构之间的相互作用,包括纳米碘,纳米管(4,0),纳米液和C _(60)纳米证,以获得电池电压( v)用于Mg离子电池(MIBS)。使用ωb97xd理论和6-31g(d)基础集进行了总能量,几何优化,前沿分子轨道(FMO)和状态分析密度(DOS)分析。 DFT计算阐明了Mg〜(2+)离子和纳米结构之间的能量吸附的变化,E _(AD),在订单管>锥形>笼中。然而,纳米核纳的v _(细胞)是最高的。 MIB的V _(单元格)的变化位于顺序锥形>管>纸上。本研究理论上考虑了由于其高V _(细胞)值而作为电池中的阳极的可能性。

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