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Vertically aligned cobalt oxide nanowires on graphene networks for high-performance lithium storage

机译:石墨烯网络上垂直排列的氧化钴纳米线,用于高性能锂存储

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摘要

Despite various electrochemically active materials, such as metals, metal oxides and sulfides, which have been widely utilized for lithium storage, these materials still encounter unsatisfied electrochemical performances including low reversible capacity, slow charge-discharge capability and poor cycle performance. Here, we demonstrate a simple approach to fabricate onedimensional CoO nanowires vertically aligned on a 3D graphene network (denoted as a 3D CoO/ graphene network) via a wet chemistry process. The resulting CoO/graphene network possesses an interconnected graphene network, hierarchical pores and a carpet-like structure. This unique network can (1) facilitate the easy access of the electrolyte, (2) prevent the aggregation of CoO nanowires, (3) accommodate the volume change of CoO during the cycle processes, (4) maintain a high electrical conductivity for the overall electrode and (5) give rise to a high content of CoO in the composite (~92 wt%). As a result, the 3D CoO/graphene network can be directly used as an anode material without any binder or conductive additives for lithium storage, and it exhibits a high capacity of 857 mAh g~(?1), an excellent rate capability and good cycle performance. We believe that such a simple but efficient protocol will provide a new pathway for the fabrication of various 3D metal or metal oxide-graphene networks for wide applications in such fields as energy storage, sensors and catalysts.
机译:尽管各种电化学活性材料,例如金属,金属氧化物和硫化物已被广泛地用于锂存储,但是这些材料仍然遇到不令人满意的电化学性能,包括低可逆容量,缓慢的充放电能力和较差的循环性能。在这里,我们演示了一种通过湿化学工艺制造在3D石墨烯网络(表​​示为3D CoO /石墨烯网络)上垂直对齐的一维CoO纳米线的简单方法。所得的CoO /石墨烯网络具有互连的石墨烯网络,分层的孔和类似地毯的结构。这种独特的网络可以(1)促进电解质的容易获取;(2)防止CoO纳米线的聚集;(3)在循环过程中适应CoO的体积变化;(4)保持整体的高电导率电极和(5)在复合物中产生较高的CoO含量(〜92 wt%)。结果,3D CoO /石墨烯网络可以直接用作负极材料,而无需使用任何粘合剂或导电添加剂来存储锂,并且它具有857 mAh g〜(?1)的高容量,优异的倍率性能和良好的循环性能。我们相信,这样一个简单而有效的协议将为制造各种3D金属或金属氧化物-石墨烯网络提供一条新途径,以广泛应用于诸如储能,传感器和催化剂等领域。

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