二硫化钼/氧化石墨烯的合成及其在可充电锌离子电池正极材料中的充放电性能研究

Kien Nguyen-Ba Nguyen, H. Le, Anh T. Vo Vo, D. Luu
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摘要

近年来,可充电水性锌离子电池因其低成本和安全性而受到广泛关注,成为电网储能应用的潜在候选者。然而,为了达到实际应用,必须开发合适的阴极材料。作为一种二维层状材料,二硫化钼基材料是非常有潜力的候选材料。本文采用水热法合成了MoS2/rGO材料,并对其作为可充电锌离子电池正极材料的充放电性能进行了研究。MoS2/rGO具有扩展的中间层,可实现约170 mAh/g的高初始容量,但稳定性不高。相比之下,MoS2-KOA的容量较低,但即使在200次充放电循环后也非常稳定。本研究揭示了具有膨胀中间层的mos2基材料的优点和缺点,并建议进一步寻找稳定膨胀中间层的方法以提高充放电稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A study on the synthesis of MoS2/rGO and the investigation of their charge-discharge properties when used as cathode material in a rechargeable Zn-ion battery
Recently, rechargeable aqueous Zn-ion batteries have attracted much attention and are potential candidates for grid storage applications because of their low cost and safety. However, to approach practical applications, suitable cathode materials must be developed. As a two-dimensional layered material, MoS2-based materials are very potential candidates. Herein, MoS2/rGO materials were synthesized by hydrothermal method and then the charge-discharge properties of the fabricated materials were investigated when they are used as cathode materials for rechargeable Zn-ion batteries. The MoS2/rGO has an expanded interlayer, which achieves a high initial capacity of about 170 mAh/g but does not have a high stability. In contrast, the MoS2-KOA has a low capacity but is very stable, even after 200 charge/discharge cycles. This study has shown the advantages and disadvantages of MoS2-based materials with expanded interlayer and suggests further work to find methods to stabilize the expanded interlayer to increase the charge/discharge stability.
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