School of Chemistry & Chemical Engineering, Xianyang Normal University, Xianyang 712000, PR China.
School of Chemistry & Chemical Engineering, Xianyang Normal University, Xianyang 712000, PR China.
J Colloid Interface Sci. 2017 May 15;494:355-362. doi: 10.1016/j.jcis.2017.01.062. Epub 2017 Jan 19.
The practical application of graphene (GR) has still been hindered because of its unsatisfied physical and chemical properties resulting from the irreversible agglomerates. Preparation of GR-based materials with designed porosities is essential for its practical application. In this work, a facile and scalable method is developed to synthesize carbon nanotubes/holey graphene (CNT/HGR) flexible film using functional CNT and HGR as precursors. Owing to the existence of the small amount CNT, the CNT-5/HGR flexible film with a 3D conductive interpenetrated architecture exhibit significantly improved ion diffusion rate compared to that of the HGR. Moreover, CNT-5/HGR flexible film can be used as binder-free supercapacitor electrodes with ultrahigh specific capacitances of 268Fg, excellent rate capabilities, and superior cycling stabilities. CNT-5/HGR flexible film could be used to fabricate high-performance flexible supercapacitors electrodes.
由于不可逆团聚,石墨烯(GR)的物理和化学性质仍不令人满意,其实际应用受到限制。制备具有设计多孔性的 GR 基材料对于其实际应用至关重要。在这项工作中,开发了一种简便且可扩展的方法,使用功能性 CNT 和 HGR 作为前体制备碳纳米管/多孔石墨烯(CNT/HGR)柔性薄膜。由于存在少量 CNT,与 HGR 相比,具有 3D 互穿结构的 CNT-5/HGR 柔性薄膜表现出显著提高的离子扩散速率。此外,CNT-5/HGR 柔性薄膜可用作无粘结剂超级电容器电极,具有超高的比电容 268Fg、优异的倍率性能和卓越的循环稳定性。CNT-5/HGR 柔性薄膜可用于制造高性能柔性超级电容器电极。