Electrospinning synthesis of Na2MnPO4F/C nanofibers as a high voltage cathode material for Na-ion batteries

Electrospinning synthesis of Na2MnPO4F/C nanofibers as a high voltage cathode material for Na-ion batteries
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静电纺丝合成Na2MnPO4F/C纳米纤维作为钠离子电池高压正极材料

DOI:
10.1016/j.ceramint.2018.06.236
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发表时间:
2018-10
影响因子:
5.2
通讯作者:
Shengkui Zhong
Shengkui Zhong
中科院分区:
材料科学1区
文献类型:
--
作者:
Yong Hu;Ling Wu;Guixiang Liao;Yan Yang;Fan Ye;Jiabin Chen;Xing Zhu;Shengkui Zhong

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采用静电纺丝法制备了包埋Na 2 MnPO 4F纳米颗粒的三维碳纳米纤维,并将其作为钠离子电池正极材料进行了研究。Na 2 MnPO 4F纳米粒子结晶良好,粒径约为10-30 nm,碳纳米纤维直径约为100 nm。由于Na 2 MnPO 4F的超细颗粒尺寸以及碳纳米纤维三维电子/离子杂化网络的高导电性,在650 °C下合成的材料在室温下表现出良好的电化学性能。结果表明,Na 2 MnPO 4F在充放电过程中出现了一个明显的电位平台,最高可达3.6 V,在0.05C倍率下的初始比容量为122.4 mAh g− 1,接近Na 2 MnPO 4F的理论容量(1个Na+引出)。本工作提出了一种新的高性能钠离子电池正极材料Na 2 MnPO 4F的设计策略。
Three-dimensional carbon nanofibers embedded with Na2MnPO4F nanoparticles are fabricated via electrospinning method and investigated as cathode material for sodium ion batteries. The Na2MnPO4F nanoparticles with a size of about 10–30 nm are well-crystallized and the diameter of the carbon nanofibers are about 100 nm. Due to the ultrafine particle size of Na2MnPO4F together with high conductivity of the three-dimensional electron/ion hybrid network of carbon nanofibers, the material synthesized at 650 °C exhibit good electrochemical performance at room temperature. It is found that an obvious potential platform as high as 3.6 V during charge/discharge processes occurs and there is an initial specific capacity of 122.4 mAh g−1at 0.05C rate, which is close to the theoretic capacity (one Na+extracted) of Na2MnPO4F. This work suggests a new design strategy for high-performance Na2MnPO4F cathodes of sodium-ion batteries.
通过在掺硫石墨烯片上强结合纳米结构 Sb2S3 来增强钠离子电池性能。
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