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首页> 外文期刊>Nanoscale >Synthesis and characterization of metal-organic framework/biomass-derived CoSe/C@C hierarchical structures with excellent sodium storage performance
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Synthesis and characterization of metal-organic framework/biomass-derived CoSe/C@C hierarchical structures with excellent sodium storage performance

机译:有机合成和表征框架/ biomass-derived谈心/ C@C层次与优秀的钠存储结构性能

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摘要

Metal selenide has attracted much attention for use in rechargeable batteries due to its excellent conductivity and considerable capacity. However, it is still necessary to achieve a long cycle life and excellent Na+ storage performance to enable its practical application. Volume expansion and poor stability of selenide during operation also hinder its industrial applications. As metal-organic frameworks and aerogels possess porous structures, carbon materials derived from them can effectively reduce the volume expansion of selenide, resulting in improving cycling stability and enhancing Na+ storage. In this work, CoSe/C@C composites with a hierarchical structure were successfully prepared by freeze-drying and in situ selenization as anode materials. The CoSe/C@C composites exhibited superior cycling stability (a capacity of 332.3 mA h g(-1)) and capacity retention (63.1% compared to the second cycle) at 200 mA g(-1), after 500 cycles. CoSe/C@C also exhibited a high rate performance of 403.4 mA h g(-1) at 2 A g(-1). Moreover, thanks to the high capacitance contribution and some redox reactions during cycling, the CoSe/C@C electrode possesses outstanding rate capability.
机译:硒化金属吸引了大量关注由于其使用的充电电池良好的导电性和相当大的能力。然而,它仍然需要实现一个长循环寿命和优秀的Na +存储性能使它的实际应用。扩张和稳定性差的硒化操作也阻碍其工业应用程序。气凝胶具有多孔结构,碳材料来源于他们能有效减少硒化的体积膨胀,导致提高循环稳定性和加强Na +存储。复合材料的分层结构成功由冷冻干燥和原地selenization作为阳极材料。聊天/ C@C复合材料表现出优越的自行车稳定性(容量332.3 mA h g (1))能力保留(63.1%相比,第二个周期)马200 g(1), 500年之后周期。聊天/ C@C也表现出高的性能403.4 mA h g(1)在2 g(1)。由于高和电容的贡献一些氧化还原反应在自行车、谈心/ C@C电极具有杰出的能力。

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