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Phosphorus-doping-induced kinetics modulation for nitrogen-doped carbon mesoporous nanotubes as superior alkali metal anode beyond lithium for high-energy potassium-ion hybrid capacitors

机译:Phosphorus-doping-induced动力学调制的nitrogen-doped介孔碳纳米管优越的碱金属阳极锂之外高能钾离子混合电容器

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摘要

Alkali metal ion beyond lithium based energy storage systems have recently attracted increasing attention due to their unique advantages of high natural abundance and low cost. Herein, we report the fabrication of P,N-codoped carbon mesoporous nanotubes (denoted as PNC-MeNTs) through a facile two-step strategy with MnO2 nanowires as a dual-function sacrificing template, where the in situ oxidative polymerization formation of pyrrole-aniline-phytic acid composite nanotubes and a subsequent carbonization treatment are involved. The PNC-MeNTs exhibit outstanding electrochemical performance for both Na+ and K+ storage, respectively, where high specific capacities of 287.2 mA h g(-1) and 219.6 mA h g(-1) at 0.1 A g(-1) and remarkable cycling stability over 10 000 cycles at 10 A g(-1) and 3000 cycles at 1 A g(-1) can be achieved. More importantly, potassium-ion hybrid capacitors with a PNC-MeNT anode and an activated carbon cathode can deliver remarkable energy/power density of 175.1 W h kg(-1)/160.6 W kg(-1), as well as a long cycling life. The possible origins and storage mechanisms are investigated with combined characterization methods including in situ Raman spectroscopy and a galvanostatic intermittent titration technique. This study may introduce a new avenue for designing carbonaceous electrode candidates for future high-performance energy storage devices.
机译:碱金属离子在锂的基础能源存储系统最近吸引了由于他们独特的越来越多的关注高天然丰度和低的优点成本。P, N-codoped介孔碳纳米管(表示PNC-MeNTs)通过一个简单两步策略汇总纳米线作为双重功能牺牲模板,原位氧化聚合形成的pyrrole-aniline-phytic酸复合纳米管和随后的碳化处理参与。Na +和K +的电化学性能分别存储在特定的高马能力287.2 h g(1)和219.6 mA h0.1 g (1) g(1)和非凡的自行车稳定在10 000个周期在10 g (1)3000个周期在1 g(1)可以实现。重要的是,钾离子混合电容器活性炭PNC-MeNT阳极和阴极可以提供显著的能量/功率密度175.1 W W h公斤(1)/ 160.6公斤(1),以及一个循环寿命长。存储机制与联合调查包括原位拉曼表征方法光谱和恒电流断续滴定技术。碳质电极设计的新途径候选人为未来高性能能量存储设备。

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