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Adsorption and diffusion of mono, di, and trivalent ions on two-dimensional TiS2

机译:二维TIS2上单次,DI和三价离子的吸附和扩散

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摘要

A comparative study of the monovalent (Li, Na, and K) and multivalent (Be, Mg, Ca, and Al) metal ion adsorption and diffusion on an electronically semi-metallic two-dimensional nanosheet of 1T structured TiS2 is presented here to contribute to the search for abundant, cheap, and nontoxic ingredients for efficient rechargeable metal ion batteries. The total formation energy of the metal ion adsorption and the Bader charge analysis show that the divalent Mg and Ca ions can have a charge storage density double that of the monovalent Li, Na, and K ions, while the Be and Al ions form metallic clusters even at a low adsorption density because of their high bulk energies. The adsorption of Mg ions shows the lowest averaged open circuit voltage (0.13 V). The activation energy barriers for the diffusion of metal ions on the surface of the monolayer successively decrease from Li to K and Be to Ca. Mg and Ca, being divalent, are capable of storing a higher power density than Li while K and Na have a higher rate capability than the Li ions. Therefore, rechargeable Li ion batteries can be totally or partially replaceable by Mg ion batteries, where high power density and high cell voltage are required, while the abundant, cheap, and fast Na ions can be used for green grid applications.
机译:在此提出了在1T结构化TIS2的电子半金属二维纳米晶片上的单价(Li,Na和K)和多价(Be,Mg,Ca和Al)金属离子吸附和扩散的对比研究。寻找高效的可充电金属离子电池的丰富,便宜和无毒成分。金属离子吸附的总形成能量和较糟糕的电荷分析表明,二价Mg和Ca离子可以具有一般性Li,Na和K离子的电荷存储密度的两倍,而BE和Al离子形成金属簇由于其高批量能量,即使是低吸附密度。 Mg离子的吸附显示了最低平均开路电压(0.13 V)。单层表面上金属离子扩散的激活能量屏障连续地从Li到k递减到Ca. Mg和Ca,是二价,能够存储比Li的更高功率密度,而K和NA具有比Li离子更高的速率能力。因此,可充电的Li离子电池可以完全或部分地通过Mg离子电池替换,其中需要高功率密度和高电池电压,而丰富,便宜,快速的Na离子可用于绿色网格应用。

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