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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Graphene encapsulated metallic state Ce2Sn2O7 as a novel anode material for superior lithium-ion batteries and capacitors
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Graphene encapsulated metallic state Ce2Sn2O7 as a novel anode material for superior lithium-ion batteries and capacitors

机译:石墨烯封装金属状态Ce2sn2O7作为用于优异锂离子电池和电容器的新型阳极材料

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摘要

The development of bimetallic-based ternary materials (BTMs) has attracted much attention due to their multi-component flexibility and synergistic effect. Herein, BTM (Ce2Sn2O7) nanoparticles are encapsulated into graphene (Ce2Sn2O7/RGO), which served as a novel anode material for lithium-ion batteries and capacitors (LIBs/LICs). Benefiting from the synergistic effects from two metal elements and the conductive networks of graphene, the optimized Ce2Sn2O7/RGO delivers a reversible capacity of 814.6 mA h g(-1) at 0.05 A g(-1), good cycling performance with a reversible capacity of 369.5 mA h g(-1) after 1500 cycles at 1 A g(-1) and a superior rate capability of 432.4 mA h g(-1) at 2 A g(-1) in Li+ half cells. Meanwhile, the detailed phase transition and kinetics analysis as well as the theoretical calculation are performed to investigate the reaction mechanisms behind the good electrochemical performance. Furthermore, the Ce2Sn2O7/RGO also shows good lithium-ion full cell and capacitor performances coupled with commercial LiCoO2 and activated carbon, respectively, which further demonstrates the application prospect of Ce2Sn2O7/RGO.
机译:基于双金属的三元材料(BTMS)的发展由于其多组分柔韧性和协同效应而引起了很多关注。这里,BTM(Ce2Sn2O7)纳米颗粒被包封成石墨烯(Ce2Sn2O7 / Rgo),其用作锂离子电池和电容器的新型阳极材料(Libs / LICs)。受益于来自两个金属元素的协同​​效应和石墨烯的导电网络,优化的CE2SN2O7 / RGO可提供814.6 mA Hg(-1)的可逆容量,0.05 a g(-1),良好的循环性能,可逆容量369.5 mA Hg(-1)在1Ag(-1)的1500次循环后,在Li +半细胞中为24.4 mA Hg(-1)的优异速率能力。同时,进行详细的相变和动力学分析以及理论计算,以研究良好的电化学性能背后的反应机制。此外,CE2SN2O7 / RGO还分别显示出与商用LiCoO2和活性炭相结合的良好锂离子全细胞和电容器性能,其进一步证明了Ce2Sn2O7 / Rgo的应用前景。

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