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首页> 外文期刊>Nanoscale >Modulation of MoS2 interlayer dynamics by in situ N-doped carbon intercalation for high-rate sodium-ion half/full batteries
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Modulation of MoS2 interlayer dynamics by in situ N-doped carbon intercalation for high-rate sodium-ion half/full batteries

机译:通过原位动态调制的二硫化钼夹层n型高效碳夹层钠-半/全电池

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摘要

In comparison with lithium-ion batteries, sodium-ion batteries (SIBs) have been proposed as an alternative for large-scale energy storage. However, finding an anode material that can overcome the sluggish electrochemical reaction kinetics and fast capacity fading caused by large volume expansion during cycling is problematic. In this study, the intercalation technique for nitrogen-doped carbon layers is implemented for the molybdenum disulfide (MoS2/NC) structure to improve the rate and cycling stability of SIBs by increasing the diffusion rate of sodium ions and mitigating excessive volume structural expansion. The as-synthesized MoS2/NC anode has a high discharge specific capacity of 546 mA h g(-1) at 1 A g(-1) after 160 cycles, as well as a high rate and stable cycle performance of 406 mA h g(-1) at 10 A g(-1) after 1000 cycles. Upon coupling with a high-voltage Na3V2(PO4)(2)O2F cathode, the sodium-ion full battery displays high specific energies of 78.57 W h kg(-1) and 49.70 W h kg(-1) at specific powers of 193.76 W kg(-1) and 3756.80 W kg(-1), respectively, with commercialization potential demonstrated.
机译:与锂离子电池相比,(兄弟姐妹)已经被提议作为钠电池另一个大规模储能。然而,能够找到一个阳极材料克服缓慢的电化学反应动力学和快速衰落引起的大能力体积膨胀期间骑自行车是有问题的。在这项研究中,夹层技术nitrogen-doped碳层实现二硫化钼(二硫化钼/ NC)结构提高率和循环稳定性的兄弟姐妹钠离子的扩散速度和增加减轻过度体积结构扩张。as-synthesized二硫化钼/数控阳极具有较高546毫安的放电比容量h g (1)1 g(1) 160年周期,以及高率和稳定的循环性能的406毫安h在10 g g(1)(1) 1000年以后周期。耦合与高压Na3V2 (PO4) (2) O2F阴极,钠电池显示高的特定能量78.57公斤(1)和W h49.70 W h公斤193.76 W(1)在特定的权力W公斤3756.80公斤(1)和(1),分别商业化潜力。

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