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Binder-free nitrogen-doped carbon paper electrodes derived from polypyrrole/cellulose composite for Li-O2 batteries

机译:Li-O2电池用聚吡咯/纤维素复合材料制成的无粘合剂氮掺杂碳纸电极

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摘要

This work presents a novel binder-free nitrogen-doped carbon paper electrode (NCPE), which was derived from a N-rich polypyrrole (PPy)/cellulose-chopped carbon filaments (CCFs) composite, for Li–O2 batteries. The fabrication of NCPE involved cheap raw materials (e.g., Cladophora sp. green algae) and easy operation (e.g., doping N by a carbonization of N-rich polymer), which is especially suitable for large-scale production. The NCPE exhibited a bird's nest microstructure, which could provide the self-standing electrode with considerable mechanic durability, fast Li+ and O2 diffusion, and enough space for the discharge product deposition. In addition, the NCPE contained N-containing function groups, which may promote the electrochemical reactions. Furthermore, binder-free architecture designs can prevent binder-involved parasitic reactions. A Li–O2 cell with the NCPE displayed a cyclability of more than 30 cycles at a constant current density of 0.1 mA/cm2. The 1st discharge capacity for a cell with the NCPE reached 8040 mAh/g at a current density of 0.1 mA/cm2, with a cell voltage around 2.81 V. A cell with the NCPE displayed a coulombic efficiency of 81% on the 1st cycle at a current density of 0.2 mA/cm2. These results represent a promising progress in the development of a low-cost and versatile paper-based O2 electrode for Li–O2 batteries.
机译:这项工作提出了一种新颖的,无粘结剂的氮掺杂碳纸电极(NCPE),该电极是由富含N的聚吡咯(PPy)/纤维素短切碳丝(CCFs)复合材料制成的,用于Li-O2电池。 NCPE的制造涉及廉价的原料(例如,Cladophora sp。绿藻)和容易的操作(例如,通过富含N的聚合物的碳化来掺杂N),这特别适合于大规模生产。 NCPE具有燕窝微观结构,可以为自立式电极提供相当大的机械耐久性,快速的Li +和O2扩散以及足够的空间用于放电产物沉积。另外,NCPE含有含N的官能团,其可以促进电化学反应。此外,无粘合剂的体系结构设计可以防止与粘合剂有关的寄生反应。具有NCPE的Li-O2电池在0.1mA / cm2的恒定电流密度下显示出超过30个循环的循环能力。 NCPE电池的第一放电容量在0.1mA / cm2的电流密度下达到8040 mAh / g,电池电压约为2.81V.NCPE电池在第一周期的库仑效率为81%电流密度为0.2mA / cm2这些结果代表了低成本,多功能的Li-O2电池纸基O2电极开发的有希望的进展。

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