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Al-based metal organic framework derived self-assembled carbon nanosheets as innovative anodes for Li- and Na-ion batteries

机译:基于Al的金属有机框架衍生自组装的碳纳蒙片作为Li-和Na离子电池的创新阳极

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摘要

Functional modification and structural design of carbon electrode materials are considered as a cost-effective method to improve their electrochemical performance. In this study, a solvothermal method is applied to realize self-assembly of the metal-organic framework. After simple carbonization and acid treatment, carbon nanosheets with 2D adjustable defective sub-units are successfully prepared for the first time. It is found that carbonization temperature has a significant effect on the carbon skeleton structure. The optimal nanostructures with large specific surface area and appropriate pore size distribution make self-assembled carbon nanosheets having excellent Li/Na-ion storage properties. In addition, the adjustable carbon skeleton structure can effectively avoid irreversible damage when charge-discharge cycles. For Li-ion batteries, a specific capacity of 825 mAh g(-1) is achieved after 100 cycles at 100 mA g(-1), while for Na-ion batteries a specific capacity of 193 mAh g(-1) is observed after 100 cycles at 100 mA g(-1). Moreover, for Na-ion batteries, even at a high rate of 1000 mA g(-1) the material delivers a specific capacity of 109.5 mAh g(-1) after 3500 cycles.
机译:碳电极材料的功能改性和结构设计被认为是提高其电化学性能的经济有效方法。在该研究中,应用了一种溶剂热方法来实现金属有机框架的自组装。在简单的碳化和酸处理后,首次成功制备具有2D可调节缺陷子单元的碳纳米片。发现碳化温度对碳骨架结构具有显着影响。具有大的比表面积和适当的孔径分布的最佳纳米结构使具有优异的Li / Na离子储存性能的自组装碳纳米片。此外,可调节的碳骨架结构可以在充放电循环时有效避免不可逆的损坏。对于锂离子电池,在100 mA g(-1)下100次循环后,实现了825mAhg(-1)的特定容量,而对于Na离子电池,观察到193mAhg(-1)的特定容量在100 mA g(-1)下100次循环后。此外,对于Na离子电池,即使以1000 mA g(-1)的高速率,该材料在3500次循环后,该材料在3500次循环后提供109.5mAhg(-1)的特定容量。

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