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In Situ Synthesis of MnS Hollow Microspheres on Reduced Graphene Oxide Sheets as High-Capacity and Long-Life Anodes for Li- and Na-Ion Batteries

机译:还原的氧化石墨烯片上原位合成MnS空心微球,作为锂离子和钠离子电池的高容量和长寿命阳极

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摘要

Uniform MnS hollow microspheres in situ crystallized on reduced graphene oxide (RGO) nanosheets via a facile hydrothermal method. The MnS/RGO composite material was used as the anode for Na-ion batteries for the first time and exhibited excellent cycling performance, superior specific capacity, and great cycle stability and rate capability for both Li- and Na-ion batteries. Compared with non-encapsulated pure MnS hollow microspheres, these MnS/RGO nanocomposites demonstrated excellent charge discharge stability and long cycle life. Li-ion storage testing revealed that these MnS/RGO nanocomposites deliver high discharge charge capacities of 640 mAh g(-1) at 1.0 A g(-1) after 400 cycles and 830 mAh g(-1) at 0.5 A g(-1) after 100 cycles. The MnS/RGO nanocomposites even retained a specific capacity of 308 mAh g(-1) at a current density of 0.1 A g(-1) after 125 cycles as the anode for Na-ion batteries. The outstanding electrochemical performance of the MnS/RGO composite attributed to the RGO nanosheets greatly improved the electronic conductivity and efficiently mitigated the stupendous volume expansion during the progress of charge and discharge.
机译:通过简便的水热法在还原的氧化石墨烯(RGO)纳米片上原位结晶均匀的MnS空心微球。 MnS / RGO复合材料首次用作Na离子电池的负极,并且对Li和Na离子电池均表现出优异的循环性能,优异的比容量以及出色的循环稳定性和倍率性能。与未封装的纯MnS中空微球相比,这些MnS / RGO纳米复合材料具有出色的电荷放电稳定性和长循环寿命。锂离子存储测试表明,这些MnS / RGO纳米复合材料在400次循环后在1.0 A g(-1)时可提供640 mAh g(-1)的高放电电荷容量,在0.5 A g(-时可提供830 mAh g(-1)的高放电容量。 1)100个周期后。作为Na离子电池的阳极,经过125次循环后,MnS / RGO纳米复合材料甚至在0.1 A g(-1)的电流密度下仍保持308 mAh g(-1)的比容量。归因于RGO纳米片的MnS / RGO复合材料出色的电化学性能极大地提高了电子电导率,并有效地减轻了充电和放电过程中的巨大体积膨胀。

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