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首页> 外文期刊>Frontiers in Chemistry >Biomass-Derived P/N-Co-Doped Carbon Nanosheets Encapsulate Cu3P Nanoparticles as High-Performance Anode Materials for Sodium–Ion Batteries
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Biomass-Derived P/N-Co-Doped Carbon Nanosheets Encapsulate Cu3P Nanoparticles as High-Performance Anode Materials for Sodium–Ion Batteries

机译:生物质衍生的P / N-共掺杂碳纳米片将Cu3P纳米颗粒包封为钠离子电池的高性能阳极材料

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Biomass-derived approaches have been accepted as a practical way for the design of transitional metal phosphides confined by carbon matrix (TMPs@C) as energy storage materials. Herein, we successfully synthesize P/N-codoped carbon nanosheets encapsulating Cu3P nanoparticles (Cu3P@P/N-C) by a feasible aqueous reaction followed by a phosphorization procedure using sodium alginate as biomass carbon source. Cu-alginate hydrogel balls can be squeezed into 2D nanosheets through freeze-drying process. Then Cu3P@P/N-C was obtained after the phosphorization procedure. This rationally designed structure not only improved the kinetics of ion/electron transportation but also buffered the volume expansion of Cu3P nanoparticles during the continuous charge and discharge process. In addition, the 2D P/N-codoped carbon nanosheets also can serve as a conductive matrix, which can enhance the electronic conductivity of the whole electrode as well as provide rapid channels for electron/ion diffusion. Thus, when applied as anode materials for sodium-ion batteries, it exhibited remarkable cycling stability and rate performance. Prominently, Cu3P@P/N-C demonstrated an outstanding reversible capacity of 209.3 mA h g?1 at 1 A g?1 after 1000 cycles. Besides, it still maintained a superior specific capacity of 118.2 mA h g?1 after 2000 cycles, even at a high current density of 5 A g?1.
机译:生物质衍生的方法已被接受作为由碳基质(TMPS @ C)限制为能量储存材料的过渡金属磷化剂的实用方法。在此,我们通过可行的水性反应成功地合成包封Cu3P纳米颗粒(Cu3P @ P / N-C)的P / N型碳纳米蛋白酶,然后用藻酸钠作为生物质碳源。通过冷冻干燥过程可以将Cu-藻酸盐水凝胶球挤压成2D纳米蛋白酶。然后在磷化方法之后获得Cu3P @ P / N-C.这种合理设计的结构不仅改善了离子/电子传输的动力学,而且还在连续充电和放电过程中缓冲了Cu3P纳米颗粒的体积膨胀。另外,2D P / N编码的碳纳蒙片也可以用作导电矩阵,其可以增强整个电极的电子电导率,并为电子/离子扩散提供快速通道。因此,当施用作为钠离子电池的阳极材料时,它表现出显着的循环稳定性和速率性能。突出的是,Cu3P @ P / N-C在1000次循环后,展示了209.3mA H·1的出色可逆容量为209.3mA H·1,在1A的情况下。此外,它仍然在2000次循环之后保持了118.2 mA H·1的优异特定容量,即使在5 ag≤1的高电流密度下也是如此。

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