论文标题

等离子电场控制的定向石墨烯用于储能应用

Plasma-Electric Field Controlled Growth of Oriented Graphene for Energy Storage Applications

论文作者

Ghosh, Subrata, Polaki, S. R., Kamruddin, M., Jeong, Sang Mun, Kostya, Ostrikov

论文摘要

石墨烯众所周知,可以随着与生长基板对齐的平坦床单生长。定向的石墨烯结构通常与底物垂直,最近引起了主要的关注。最常见的是,在血浆辅助生长中实现了正常的取向,并且据信是由于等离子体引起的构建的电场引起的,通常将其定向与底物正常。这项工作的重点是内部电场对石墨烯结构各种构型的生长方向,形态,互连和物理特性的影响,并揭示了这些特征对电场方向的独特依赖性。结果表明,相对于内置等离子体电场的方向,从平行到正常方向的生长底物的倾斜导致形态学从平坦的石墨烯结构到定向的单个石墨烯片,然后互连到方向的石墨烯片的三维网络。生长取向的揭示过渡会导致润湿性质的变化,石墨结构中的缺陷类型,并在用作超级电容器电极时会影响其电荷存储能力。这种简单而多功能的方法为在一次生产过程中生产了潜在的大量不同定向和结构化石墨烯片的新机会。

Graphene is well known to grow as flat sheets aligned with the growth substrate. Oriented graphene structures typically normal to the substrate have recently gained major attention. Most often, normal orientation is achieved in plasma-assisted growth and is believed to be due to plasma induced in-built electric field, which is usually oriented normal to the substrate. This work focuses on the effect of in-built electric field on growth direction, morphology, interconnectedness, and physical properties of various configurations of graphene structures and reveals the unique dependence of these features on electric field orientation. It is shown that tilting of growth substrates from parallel to normal direction with respect to the direction of inbuilt plasma electric field leads to the morphological transitions from flat graphene structure, to oriented individual graphene sheets and then interconnected three-dimensional networks of oriented graphene sheets. The revealed transition of the growth orientation leads to change in wetting nature, types of defect in graphitic structures as well as affects their charge storage capacity when used as supercapacitor electrodes. This simple and versatile approach opens new opportunities for the production of potentially large batches of differently oriented and structured graphene sheets in one production run.

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