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Cucurbit6uril‐Derived Nitrogen‐Doped Hierarchical Porous Carbon Confined in Graphene Network for Potassium‐Ion Hybrid Capacitors

机译:葫芦6尿素衍生的氮气掺杂的分层多孔多孔多孔碳限制在石墨烯网络中用于钾离子混合电容器

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摘要

Potassium‐ion hybrid capacitors (PIHCs) have attracted tremendous attention because their energy density is comparable to that of lithium‐ion batteries, whose power density and cyclability are similar to those of supercapacitors. Herein, a pomegranate‐like graphene‐confined cucurbit[6]uril‐derived nitrogen‐doped carbon (CBC@G) with ultra‐high nitrogen‐doping level (15.5 at%) and unique supermesopore‐macropores interconnected graphene network is synthesized. The carbonization mechanism of cucurbit[6]uril is verified by an in situ TG‐IR technology. In a K half‐cell configuration, CBC@G anode demonstrates a superior reversible capacity (349.1 mA h g−1 at 0.1 C) as well as outstanding rate capability and cyclability. Moreover, systematic in situ/ex situ characterizations, and theory calculations are carried out to reveal the origin of the superior electrochemical performances of CBC@G. Consequently, PIHCs constructed with CBC@G anode and KOH‐activated cucurbit[6]uril‐derived nitrogen‐doped carbon cathode demonstrate ultra‐high energy/power density (172 Wh kg−1/22 kW kg−1) and extraordinary cyclability (81.5% capacity retention for 5000 cycles at 5 A g−1). This work opens up a new application field for cucurbit[6]uril and provides an alternative avenue for the exploitation of high‐performance PIHCs.
机译:钾离子混合电容器(PIHCS)引起了巨大的关注,因为它们的能量密度与锂离子电池的能量密度相当,其功率密度和可循环性与超级电容器的电力密度相似。这里,合成了具有超高氮掺杂水平的石榴样石墨烯局限于掺杂碳(CBC-G)(15.5at%)和独特的超高孔 - 大孔互连石墨烯网络。通过原位TG-IR技术验证了葫芦[6] URIL的碳化机制。在K个半电池配置中,CBC @ G anode演示了优异的可逆容量(349.1mA H-1,0.1℃),以及出色的速率能力和可行性。此外,实施原位/ ex原位特征和理论计算,以揭示CBC @ G的卓越电化学性能的来源。因此,用CBC @ G阳极和KOH活化的葫芦(KOH-衍生的氮气碳阴极构建的PIHCS显示出超高能量/功率密度(172WH-1/22 kW KG-1)和非凡的可行性( 81.5%容量保留5000次循环,5 A G-1)。这项工作为葫芦[6] URIL开辟了一个新的应用领域,并为高性能PIHC的开发提供了替代途径。

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