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首页> 外文期刊>ACS applied materials & interfaces >Double-Morphology CoS2 Anchored on N-Doped Multichannel Carbon Nanofibers as High-Performance Anode Materials for Na-Ion Batteries
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Double-Morphology CoS2 Anchored on N-Doped Multichannel Carbon Nanofibers as High-Performance Anode Materials for Na-Ion Batteries

机译:锚固在N掺杂的多通道碳纳米纤维上的双形态学COS2作为Na离子电池的高性能阳极材料

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摘要

Na-ion batteries (NIBs) have attracted increasing attention given the fact that sodium is relatively more plentiful and affordable than lithium for sustainable and large-scale energy storage systems. However, the shortage of electrode materials with outstanding comprehensive properties has limited the practical implementations of NIBs. Among all the discovered anode materials, transition-metal sulfide has been proven as one of the most competitive and promising ones due to its excellent redox reversibility and relatively high theoretical capacity. In this study, double-morphology N-doped CoS2/multichannel carbon nanofibers composites (CoS2/MCNFs) are precisely designed, which overcome common issues such as the poor cycling life and inferior rate performance of CoS2 electrodes. The conductive 3D interconnected multichannel nanostructure of CoS2/MCNFs provides efficient buffer zones for the release of mechanical stresses from Na+ ions intercalation/deintercalation. The synergy of the diverse structural features enables a robust frame and a rapid electrochemical reaction in CoS2/MCNFs anode, resulting in an impressive long-term cycling life of 900 cycles with a capacity of 620 mAh g(-1) at 1 A g(-1) (86.4% theoretical capacity) and a surprisingly high-power output. The proposed design in this study provides a rational and novel thought for fabricating electrode materials.
机译:鉴于钠比可持续和大规模储能系统的锂相对更丰富且价格合理,Na离子电池(NIBs)吸引了越来越多的关注。然而,具有出色综合性质的电极材料的短缺限制了NIBS的实用实施。在所有发现的阳极材料中,由于其优异的氧化还原可逆性和相对较高的理论能力,过渡金属硫化物被证明是最竞争力和最有希望的硫化物。在该研究中,精确设计了双形态的N掺杂COS2 /多通道碳纳米纤维复合材料(COS2 / MCNF),克服了常见问题,例如循环寿命不良和COS2电极的差质性能。 COS2 / MCNF的导电3D互连多通道纳米结构为来自NA +离子插入/脱嵌的机械应力提供有效缓冲区。各种结构特征的协同作用使得在COS2 / MCNFS阳极中能够稳健框架和快速的电化学反应,导致900次循环的令人印象深刻的长期循环寿命,容量为620mAhg(-1),在1A( -1)(理论容量为86.4%)和令人惊讶的高功率输出。本研究中提出的设计提供了对制造电极材料的理性和新颖的思考。

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