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首页> 外文期刊>Acta Chimica Slovenica >Possibility of C-38 and Si19Ge19 Nanocages in Anode of Metal Ion Batteries: Computational Examination
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Possibility of C-38 and Si19Ge19 Nanocages in Anode of Metal Ion Batteries: Computational Examination

机译:金属离子电池阳极中C-38和Si19Ge19纳米的可能性:计算检查

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In this study, the potential of C-38 and Si19Ge19 as anode electrodes of Li-ion, Na-ion and K-ion batteries via density functional theory was investigated. Obtained results showed that Si19Ge19 as anode electrode in metal-ion batteries has higher potential than C-38 ca 0.18 V. Calculated results illustrated that K-ion battery has higher cell voltage and higher performance than Li-ion and Na-ion batteries ca 0.15 and 0.31 V, respectively. Results showed that halogen adoption increased the cell voltage of studied metal-ion batteries ca 1.5-2.2 V. Results show that, V-cell values of studied metal-ion batteries in water are higher than gas phase ca 0.46 V. Finally it can be concluded that F-doped Si18Ge19 as anode electrode in K-ion battery has the highest performance and it can be proposed as novel metal-ion batteries with high performance.
机译:在该研究中,研究了C-38和Si19Ge19的电位作为Li离子,Na离子和K离子电池的阳极电极通过密度函数理论。 得到的结果表明,金属离子电池中的阳极电极具有比C-38 Ca0.18 V的阳极电极更高。计算结果说明K离子电池具有更高的电池电压和比Li-Ion和Na离子电池的性能更高 分别为0.31 v。 结果表明,卤素采用增加了研究的金属离子电池Ca 1.5-2.2 V的电池电压。结果表明,水中研究的金属离子电池的V细胞值高于气相Ca 0.46 V.最后它可以是 结论是,作为k离子电池中的阳极电极的F掺杂的Si18Ge19具有最高的性能,并且可以提出具有高性能的新型金属离子电池。

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