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Building vertically-structured, high-performance electrodes by interlayer-confined reactions in accordion-like, chemically expanded graphite

机译:通过手风琴状,化学膨胀的石墨中的层间 - 狭窄的反应构建垂直结构的高性能电极

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摘要

Graphene has attracted major interests as electrode materials for energy storage applications. However, the major limitation of using blade- or spin-coated graphene films for fabricating electrode is that the basal plane of the flat-lying graphene is orthogonal to the direction of charge transport, causing sluggish charge transfer kinetics for the coated graphene film. Here we propose a general, scalable strategy to prepare vertically-structured hybrid electrodes using accordion-like, chemically expanded graphite (CEG). The coated CEG rods possess two-dimensional (2D) interlayer galleries that are vertically aligned with respect to the substrate because of their large length-diameter ratio, which facilitates high-efficiency ion transport. Due to its excellent wettability and high electrochemical surface areas, these interlayer galleries allow a high loading of redox-active (RA) materials, including metal (Pt), metal hydroxide (Ni(OH)(2), Fe2O3 and MnO2) or metal dichalcogenide (MoS2). As an example, Ni(OH)(2)-infiltrated CEG shows excellent rate-performance and long-term cycling stability when used as electrochemical electrodes in lithium-ion batteries and supercapacitors.
机译:石墨烯已经吸引了主要兴趣作为能量存储应用的电极材料。然而,使用用于制造电极的叶片或旋涂的石墨烯膜的主要限制是平坦石墨烯的基体与电荷传输方向正交,导致涂覆的石墨烯膜的缓慢电荷转移动力学。在这里,我们提出了一种通过手风琴样化学膨胀的石墨(CEG)制备垂直结构化杂化电极的一般性可扩展策略。涂覆的CEG棒具有二维(2D)层间画廊,其由于其长度直径比而垂直对齐,这促进了高效离子输送。由于其优异的润湿性和高电化学表面积,这些层间画廊允许高负载氧化还原活性(Ra)材料,包括金属(Pt),金属氢氧化物(Ni(OH)(2),Fe 2 O 3和MnO 2)或金属二咪碱(MOS2)。作为一个例子,当用作锂离子电池和超级电容器中的电化学电极时,Ni(OH)(2)(2)(2)(2)(2)(2)(2)(2) - 优异的速率性能和长期循环稳定性。

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