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首页> 外文期刊>Journal of power sources >Improved rate and cycling performance of FeF_2-rGO hybrid cathode with poly (acrylic acid) binder for sodium ion batteries
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Improved rate and cycling performance of FeF_2-rGO hybrid cathode with poly (acrylic acid) binder for sodium ion batteries

机译:聚丙烯酸丙烯酸钠离子电池用FeF_2-rGO杂化阴极的改进速率和循环性能

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摘要

FeF2-reduced graphene oxide nanocomposite is in-situ synthesized and assembled into electrode with poly (acrylic acid) binder as a novel sodium ion cathode, which exhibits greatly improved electrochemical performance. The mechanism for the improved performance of the electrode is studied by ex-situ morphology and phase analysis, before and after cycling. The results show that poly (acrylic acid) binder with high adhesion ability can stabilize the electrode structure, thus increase the utilization of active materials. The in-situ hybridization of FeF2 nanoparticles with reduced graphene oxide can confine the sizes of particles, and restrain the particles agglomeration. As a result, the electrode can attain high capacity and stability. The electrode exhibits superior electrochemical performance: high capacity of 175 mAh g(-1) at 0.2A g(-1), high rate capability of 78 mAh g(-1) at 10A g(-1), and good cycling stability. The results demonstrate the electrochemical performance of metal fluoride electrode can be enhanced by using highly adhesive materials as binders and the nanostructure construction.
机译:FeF2还原的氧化石墨烯纳米复合材料是原位合成的,并以聚(丙烯酸)粘合剂作为新型钠离子阴极组装到电极中,具有极大的电化学性能。在循环之前和之后,通过异位形态和相分析研究了改善电极性能的机理。结果表明,具有高粘附力的聚丙烯酸粘合剂可以稳定电极结构,从而提高活性材料的利用率。 FeF2纳米粒子与还原的氧化石墨烯的原位杂交可以限制粒子的尺寸,并抑制粒子的团聚。结果,电极可以获得高容量和稳定性。该电极表现出优异的电化学性能:在0.2A g(-1)时具有175 mAh g(-1)的高容量,在10A g(-1)时具有78 mAh g(-1)的高倍率能力,并且循环稳定性良好。结果表明,通过使用高粘性材料作为粘合剂和纳米结构,可以提高金属氟化物电极的电化学性能。

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