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MoS2/graphene composite paper for sodium-ion battery electrodes.

机译:MoS2 /石墨烯复合纸,用于钠离子电池电极。

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摘要

We study the synthesis and electrochemical and mechanical performance of layered freestanding papers composed of acid-exfoliated few-layer molybdenum disulfide (MoS₂) and reduced graphene oxide (rGO) flakes for use as a self-standing flexible electrode in sodium-ion batteries. Synthesis was achieved through vacuum filtration of homogeneous dispersions consisting of varying weight percent of acid-treated MoS₂ flakes in GO in DI water, followed by thermal reduction at elevated temperatures. The electrochemical performance of the crumpled composite paper (at 4 mg cm⁻²) was evaluated as counter electrode against pure Na foil in a half-cell configuration. The electrode showed good Na cycling ability with a stable charge capacity ofapproximately 230 mAh g⁻¹ with respect to total weight of the electrode with Coulombic efficiency reaching approximately 99%. In addition, static uniaxial tensile tests performed on crumpled composite papers showed high average strain to failure reaching approximately 2%.
机译:我们研究了由酸剥落的几层二硫化钼(MoS 2)和还原的氧化石墨烯(rGO)薄片组成的层状独立纸的合成,电化学和机械性能,这些纸用作钠离子电池中的自立式柔性电极。通过真空过滤均相分散体来实现合成,该均相分散体由去离子水中的不同重量百分比的酸处理过的MoS 2薄片在GO中组成,然后在高温下热还原。评估了皱巴巴的复合纸的电化学性能(在4 mg cm?2时),它是半电池结构中纯Na箔的对电极。电极显示出良好的Na循环能力,相对于电极的总重量,稳定的充电容量为约230mAh g -1,库仑效率达到约99%。此外,在皱折的复合纸上进行的静态单轴拉伸试验显示,断裂的平均平均应变高,约为2%。

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