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Preparation via an electrochemical method of graphene films coated on both sides with NiO nanoparticles for use as high-performance lithium ion anodes

机译:通过电化学方法制备双面涂有NiO纳米颗粒的石墨烯薄膜,用作高性能锂离子阳极

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摘要

We report on a simple strategy for the direct synthesis of a thin film comprising interconnected NiO nanoparticles deposited on both sides of a graphene sheet via cathodic deposition. For the co-electrodeposition, graphene oxide (GO) is treated with water-soluble cationic poly(ethyleneimine) (PEI) which acts as a stabilizer and trapping agent to form complexes of GO and Ni~(2+). The positively charged complexes migrate toward the stainless steel substrate, resulting in the electrochemical deposition of PEI-modified GO/Ni(OH)2 at the electrode surface under an applied electric field. The as-synthesized film is then converted to graphene/NiO after annealing at 350 ° C. The interconnected NiO nanoparticles are uniformly deposited on both sides of the graphene surface, as evidenced by field emission scanning electron microscopy, transmission electron microscopy and energy dispersive spectrometry. This graphene/NiO structure shows enhanced electrochemical performance with a large reversible capacity, good cyclic performance and improved electronic conductivity as an anode material for lithium ion batteries. A reversible capacity is retained above 586 mA h g~(-1) after 50 cycles. The findings reported herein suggest that this strategy can be effectively used to overcome a bottleneck problem associated with the electrochemical production of graphene/metal oxide films for lithium ion battery anodes.
机译:我们报告了一种简单的策略,用于直接合成包含相互连接的NiO纳米粒子的薄膜,该薄膜通过阴极沉积沉积在石墨烯片的两侧。对于共电沉积,氧化石墨烯(GO)用水溶性阳离子聚(乙烯亚胺)(PEI)处理,该阳离子聚酰亚胺用作稳定剂和捕集剂,形成GO和Ni〜(2+)的配合物。带正电的配合物向不锈钢基材迁移,导致在施加电场的情况下PEI改性的GO / Ni(OH)2在电极表面发生电化学沉积。然后在350°C退火后,将合成后的薄膜转换为石墨烯/ NiO。互连的NiO纳米颗粒均匀沉积在石墨烯表面的两侧,这由场发射扫描电子显微镜,透射电子显微镜和能量色散光谱法证明。作为锂离子电池的负极材料,这种石墨烯/ NiO结构显示出增强的电化学性能,大的可逆容量,良好的循环性能和改善的电子传导性。 50个循环后,可逆容量保持在586 mA h g〜(-1)以上。本文报道的发现表明,该策略可以有效地用于克服与用于锂离子电池阳极的石墨烯/金属氧化物膜的电化学生产相关的瓶颈问题。

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