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Free-Standing N-Doped Carbon Nanotube Films with Tunable Defects as a High Capacity Anode for Potassium-Ion Batteries

机译:具有可调谐缺陷的独立式N掺杂的碳纳米管膜作为钾离子电池的高容量阳极

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摘要

Potassium-ion batteries (KIBs) have aroused enormous interest for future energy storage technology. However, the current anodes for KIBs greatly suffer from the rapid capacity fading and inferior rate capability. Herein, a free-standing flexible anode, that is, nitrogen-doped carbon nanotube paper (NCTP), which is derived from the pyrolysis of organic polypyrrole materials, is demonstrated for high-performance potassium storage. The correlations between the material structure and electrochemical properties have been investigated by a series of material analysis and characterizations, as well as electrochemical tests. The research results show that the annealing temperature dramatically affects the N-doping content, the carbon defects, and the graphitization degree. Electrochemical tests indicate that the NCTP annealed at 700 degrees C displays the best performances with a high reversible capacity of 250.1 mA h g(-1) at 100 mA g(-1) and superior rate capability retaining 133 mA h g(-1) at 5 A g(-1). The excellent electrochemical properties are derived from a synergic contribution from the moderate N-doping, carbon defect, and high electronic conductivity of the materials. The facile pyrolysis strategy and the appealing performances involved in this work could provide some hints to manipulate high-performance anode materials of KIBs.
机译:钾离子电池(Kibs)引起了对未来的储能技术的巨大兴趣。然而,用于KIBs的当前阳极极大地遭受快速容量衰落和劣率能力。这里,用于高性能钾储存,证明了一种自由稳定的柔性阳极,即衍生自有机聚吡咯材料热解的氮掺杂碳纳米管纸(NCTP)。已经通过一系列材料分析和表征和电化学测试研究了材料结构和电化学性质之间的相关性。研究结果表明,退火温度显着影响n掺杂含量,碳缺陷和石墨化程度。电化学测试表明,在700摄氏度下退火的NCTP在100mA G(-1)的高度可逆容量中具有高可逆容量的最佳性能,以及在5时保持133 mA Hg(-1)的优异速率能力g(-1)。优异的电化学性质源自来自中等N-掺杂,碳缺陷和材料的高电子电导率的协同贡献。本作涉及的面部热解战略和涉及的吸引力可以提供一些提示,以操纵KIB的高性能阳极材料。

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