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Sodium modified molybdenum sulfide via molten salt electrolysis as an anode material for high performance sodium-ion batteries

机译:熔融盐电解钠改性的硫化钼作为高性能钠离子电池的负极材料

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The paper reports a facile and cost effective method for fabricating sodium molybdenum sulfide nanoparticles through using MoS2 sheets as the precursor by sodium-modification. The electrochemical performances of sodium molybdenum sulfide nanoparticles are studied as anode materials for sodium-ion batteries. The galvanostatic charge-discharge measurements have been performed in a voltage range of 0.01-2.6 V vs. Na+/Na under different current densities, using the as-prepared sodium molybdenum sulfide nanoparticles as a working electrode. Typically, the initial discharge and charge capacities of sodium molybdenum sulfide nanoparticles are 475 and 380 mA h g(-1), respectively, at a current density of 20 mA g(-1). The sodium molybdenum sulfide nanoparticles exhibit high capacity with a reversible discharge capacity of about 190 mA h g(-1) after 100 cycles. It should be emphasized that the discharge reaction consists of two steps which correspond to voltage plateaus of 0.93 V and 0.85 V vs. Na+/Na in the first discharge curve of the Na/MoS2 battery, respectively. But there is only one apparent voltage plateau in the Na/Na-Mo-S battery, and it reduces to below 0.5 V vs. Na+/Na, which can enhance the power density. All of the findings demonstrate that sodium molybdenum sulfide nanoparticles have steady cycling performance and environmental and cost friendliness as next generation secondary batteries.
机译:该论文报道了一种以MoS2片为前体通过钠改性制备硫化钼酸钠纳米粒子的简便而经济的方法。研究了钠钼硫化物纳米粒子作为钠离子电池负极材料的电化学性能。使用制备的硫化钼钼钠纳米粒子在不同电流密度下,在相对于Na + / Na的0.01-2.6 V电压范围内进行恒电流充放电测量。通常,在20 mA g(-1)的电流密度下,硫化钼钠纳米颗粒的初始放电和充电容量分别为475和380 mA h g(-1)。硫化钼钼纳米颗粒在100个循环后显示出高容量,可逆放电容量约为190 mA h g(-1)。应强调的是,放电反应包括两个步骤,分别对应于Na / MoS2电池的第一个放电曲线中相对于Na + / Na的0.93 V和0.85 V电压平稳段。但是,Na / Na-Mo-S电池中只有一个视在的电压平稳期,相对于Na + / Na,它降至0.5 V以下,这可以提高功率密度。所有的发现表明,作为下一代二次电池,硫化钼钼纳米颗粒具有稳定的循环性能,环境和成本优势。

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