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3D hierarchical porous graphene aerogel with tunable meso-pores on graphene nanosheets for high-performance energy storage

机译:在石墨烯纳米片上具有可调中孔的3D分层多孔石墨烯气凝胶可实现高性能储能

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摘要

New and novel 3D hierarchical porous graphene aerogels (HPGA) with uniform and tunable meso-pores (e.g., 21 and 53 nm) on graphene nanosheets (GNS) were prepared by a hydrothermal self-assembly process and an in-situ carbothermal reaction. The size and distribution of the meso-pores on the individual GNS were uniform and could be tuned by controlling the sizes of the Co3O4 NPs used in the hydrothermal reaction. This unique architecture of HPGA prevents the stacking of GNS and promises more electrochemically active sites that enhance the electrochemical storage level significantly. HPGA, as a lithium-ion battery anode, exhibited superior electrochemical performance, including a high reversible specific capacity of 1100 mAh/g at a current density of 0.1 A/g, outstanding cycling stability and excellent rate performance. Even at a large current density of 20 A/g, the reversible capacity was retained at 300 mAh/g, which is larger than that of most porous carbon-based anodes reported, suggesting it to be a promising candidate for energy storage. The proposed 3D HPGA is expected to provide an important platform that can promote the development of 3D topological porous systems in a range of energy storage and generation fields.
机译:通过水热自组装过程和原位碳热反应制备了在石墨烯纳米片(GNS)上具有均匀且可调的中孔(例如21和53 nm)的新型3D分层多孔石墨烯气凝胶(HPGA)。单个GNS上中孔的大小和分布是均匀的,可以通过控制在水热反应中使用的Co3O4 NP的大小进行调整。 HPGA的这种独特架构可防止GNS堆叠,并有望提供更多的电化学活性位点,从而显着提高电化学存储水平。 HPGA作为锂离子电池的负极,具有出色的电化学性能,包括在电流密度为0.1 A / g的情况下具有1100 mAh / g的高可逆比容量,出色的循环稳定性和出色的倍率性能。即使在20 A / g的大电流密度下,可逆容量仍保持在300 mAh / g,这比报道的大多数多孔碳基阳极的可逆容量都大,这表明它是一种有前途的储能材料。预计拟议中的3D HPGA将提供一个重要的平台,该平台可以在一系列能量存储和发电领域中促进3D拓扑多孔系统的发展。

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