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超薄CoSe/rGO杂化纳米片在高度可逆钠存储中的非拓扑反应

Nontopotactic Reaction in Highly Reversible Sodium Storage of Ultrathin Co Se /rGO Hybrid Nanosheets.

作者信息

Wang Xianfen, Kong Dezhi, Huang Zhi Xiang, Wang Ye, Yang Hui Ying

机构信息

Pillar of Engineering Product Development, Singapore University of Technology and Design, 8 Somapah Road, 487372, Singapore.

出版信息

Small. 2017 Jun;13(24). doi: 10.1002/smll.201603980. Epub 2017 May 12.

Abstract

Transition metal chalcogenide with tailored nanosheet architectures with reduced graphene oxide (rGO) for high performance electrochemical sodium ion batteries (SIBs) are presented. Via one-step oriented attachment growth, a facile synthesis of Co Se nanosheets anchored on rGO matrix nanocomposites is demonstrated. As effective anode materials of SIBs, Co Se /rGO nanocomposites can deliver a highly reversible capacity of 406 mA h g at a current density of 50 mA g with long cycle stability. It can also deliver a high specific capacity of 295 mA h g at a high current density of 5 A g indicating its high rate capability. Furthermore, ex situ transmission electron microscopy observations provide insight into the reaction path of nontopotactic conversion in the hybrid anode, revealing the highly reversible conversion directly between the hybrid Co Se /rGO and Co nanoparticles/Na Se matrix during the sodiation/desodiation process. In addition, it is experimentally demonstrated that rGO plays significant roles in both controllable growth and electrochemical conversion processes, which can not only modulate the morphology of the product but also tune the sodium storage performance. The investigation on hybrid Co Se /rGO nanosheets as SIBs anode may shed light on designing new metal chalcogenide materials for high energy storage system.

摘要

本文介绍了一种具有定制纳米片结构的过渡金属硫族化物与还原氧化石墨烯(rGO)复合的高性能电化学钠离子电池(SIBs)。通过一步取向附着生长,展示了一种简便合成锚定在rGO基质纳米复合材料上的CoSe纳米片的方法。作为SIBs的有效负极材料,CoSe/rGO纳米复合材料在50 mA g的电流密度下可提供406 mA h g的高度可逆容量,并具有长循环稳定性。在5 A g的高电流密度下,它还能提供295 mA h g的高比容量,表明其高倍率性能。此外,非原位透射电子显微镜观察深入了解了混合负极中非拓扑转化的反应路径,揭示了在 sodiation/desodiation 过程中,混合CoSe/rGO与Co纳米颗粒/NaSe基质之间直接进行高度可逆的转化。此外,实验证明rGO在可控生长和电化学转化过程中都起着重要作用,它不仅可以调节产物的形态,还可以调整储钠性能。对混合CoSe/rGO纳米片作为SIBs负极的研究可能为设计用于高能量存储系统的新型金属硫族化物材料提供启示。

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