材料科学
钠离子电池
电池(电)
静电纺丝
化学工程
碳纳米纤维
阳极
电化学
阴极
纳米技术
碳纤维
纳米纤维
电极
复合材料
纳米点
复合数
法拉第效率
碳纳米管
化学
量子力学
物理化学
功率(物理)
工程类
物理
聚合物
作者
Lijie Yang,Bin Yang,Xin Chen,Hui Wang,Jie Dang,Xiaojie Liu
标识
DOI:10.1016/j.electacta.2021.138246
摘要
In the current state of research, it is still a challenge to develop high-performance electrode materials with high energy density and long cycle life for sodium-ion batteries. For example, Owing to the serious volume changes of the anode active materials in the actual application of the sodium-ion batteries, which resulting in irreversible capacity loss and poor cycle stability of the battery. Taking advantage of different redox potentials of metals has proven to be an effective method to reduce volume changes. Here SbSn nanodots are encapsulated in nitrogen-doped carbon nanofibers prepared by electrospinning. The different oxidation depotentialities of Sn and Sb in SbSn helps to reduce the volume expansion during the cycle, three-dimensional interconnected N-doped carbon nanofibers(NCNFs) have a high specific surface area and high porosity, which are conducive to the transmission of electrons and ions.The resulting SbSn nanodots filled in N-doped carbon nanofibers(SbSn@NCNFs) composite exhibits impressive electrochemical performance, with high discharge capacity (808mAh g −1 at 100mAg −1 ), rate capability(331mAh g −1 at 1.6Ag −1 ) and excellent cycle stability (331mAh g −1 at 100mAg −1 after 500 cycles). By using this material as the anode and the Na 3 V 2 (PO 4 ) 2 F 3 nano-flower anchored on three-dimensional carbon sheets (NVPF@3Dc) material manufactured by our research group as the cathode, a full Sodium-ion battery(SIB) with commercial value is assembled.
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