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Graphene-Wrapped Graphitic Carbon Hollow Spheres: Bioinspired Synthesis and Applications in Batteries and Supercapacitors

机译:石墨烯包裹的石墨碳空心球:生物启发的合成及其在电池和超级电容器中的应用

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摘要

Inspired by the egg-like yolk-shell structure, a novel kind of graphene-wrapped graphitic hollow carbon spheres (G-graphitic HCS) was designed and fabricated by iron-catalyzed carbonization of double-coated polystyrene (PS) spheres. Herein, a thin carbon shell and hollow, hierarchically porous G-graphitic HCS facilitate ionic transport, while also providing more active sites for the storage of ions. Both graphitic components result in a seamless and highly efficient transmission pathway for electrons. Thus, Ggraphitic HCS demonstrate admirable multifunctions in energy-storage devices, including lithium batteries, sodium batteries, and supercapacitors. It delivers an unprecedentedly high initial discharge capacity of 2007 mAhg~(-1) at 0.1 Ag~(-1), and preserves 92.4% of the initial charge capacity after 100 cycles in a prototype lithium half-cell. The present concept may shed light on designing the key materials for next-generation energy-storage devices.
机译:受蛋状蛋黄壳结构的启发,通过铁催化双层聚苯乙烯(PS)球的碳化,设计并制造了一种新型的石墨烯包裹的石墨中空碳球(G-graphic HCS)。在本文中,薄的碳壳和中空的,分层多孔的G石墨HCS促进了离子迁移,同时还提供了更多的离子存储活性位。两种石墨成分都为电子提供了无缝且高效的传输路径。因此,Ggraphitic HCS在包括锂电池,钠电池和超级电容器在内的储能设备中展示出令人称赞的多功能。它在0.1 Ag〜(-1)时可提供前所未有的高初始放电容量(2007 mAhg〜(-1)),并且在原型锂半电池中经过100次循环后可保留92.4%的初始充电容量。本概念可以为设计下一代储能设备的关键材料提供启示。

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