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Role of Cu in Mo6S8 and Cu Mixture Cathodes for Magnesium Ion Batteries

机译:Cu在镁离子电池的Mo6S8和Cu混合阴极中的作用

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The reversible capacity of Chevrel Mo6S8 cathode can be increased by the simple addition of the Cu metal to Mo6S8 electrodes. However, the exact reaction mechanism of the additional reversible capacity for the Mo6S8 and Cu mixture cathode has not been clearly understood yet. To clarify this unusual behavior, we synthesize a novel Cu nanoparticle/graphene composite for the preparation of the mixture electrode. We thoroughly investigate the electrochemical behaviors of the Mo6S8 and Cu mixture cathode with the relevant structural verifications during Mg2+ insertion and extraction. The in situ formation of CuxMo(6)S(8) is observed, indicating the spontaneous electrochemical insertion of Cu to the Mo6S8 host from the Cu nanoparticle/graphene composite. The reversible electrochemical replacement reaction of Cu in the Mo6S8 structure is clarified with the direct evidence for the solid state Cu deposition/dissolution at the surface of Mo6S8 particles. Moreover, the Mo6S8 and Cu mixture cathode improves the rate capability compared to the pristine. We believe that our finding will contribute to understanding the origin of the additional capacity of the Mo6S8 cathode arising from Cu addition and improve the electrochemical performance of the Mo6S8 cathode for rechargeable Mg batteries.
机译:通过将铜金属简单地添加到Mo6S8电极中,可以提高Chevrel Mo6S8阴极的可逆容量。然而,对于Mo 6 S 8和Cu混合物阴极的额外可逆容量的确切反应机理尚未清楚地理解。为了阐明这种异常行为,我们合成了一种新型的铜纳米粒子/石墨烯复合材料,用于制备混合电极。我们彻底研究了Mo6S8和Cu混合阴极的电化学行为,并在Mg2 +插入和萃取过程中进行了相关的结构验证。观察到CuxMo(6)S(8)的原位形成,表明Cu自发地从Cu纳米颗粒/石墨烯复合材料电化学插入Mo6S8主体中。阐明了Mo6S8结构中Cu的可逆电化学置换反应,并直接证明了Mo6S8颗粒表面有固态Cu沉积/溶解。而且,与原始相比,Mo6S8和Cu混合阴极提高了倍率能力。我们相信,我们的发现将有助于理解由于添加Cu而产生的Mo6S8阴极的额外容量,并改善了可充电Mg电池的Mo6S8阴极的电化学性能。

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