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Design of honeycomb-like hierarchically porous carbons with engineered mesoporosity for aqueous zinc-ion hybrid supercapacitors applications

机译:具有用于锌离子杂交超级电容器的工程化学型蜂窝状的蜂窝状多孔碳的设计

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Aqueous zinc-ion hybrid supercapacitors (ZHSCs) have aroused extensive research attention in the field of electrochemical energy storage. However, the practical application of ZHSCs is severely limited by their poor rate performance, which is mainly owing to the large hydrated zinc ions radius and high desolvation free energies. Herein, we have designed an efficient route for the environment-friendly production of 3D honeycomb-like hierarchically porous carbons (HHPCs) with high specific surface and tunable porosity, using commercial magnesium oxide microparticles as a template and potassium bicarbonate as the activator. Different from previous works, the magnesium oxide microparticles displayed not only aggregation-free and low-cost but also good structural stability, which plays key roles to achieve the unique 3D honeycomb-like hierarchically structures. Benefiting from the large surface, high mesopore content, and honeycomb-like hierarchically structures, the HHPC-6 sample demonstrates desired electrochemical performance as the cathode for ZHSCs, with the largest specific capacity up to 147 mAh g(-1) at 0.2 A g(-1), impressive rate performance (48.3% of capacity retention at 50 A g(-1)), ultrahigh specific power (40 kW kg(-1) at 56.7 Wh kg(-1)). This strategy will offer a guiding function into the fabrication of nanocarbons for ZHSCs application.
机译:锌离子杂交超级电容器(ZHSCs)在电化学能量储存领域引起了广泛的研究。然而,Zhscs的实际应用受到它们的差价差的差,主要是由于大型水合锌离子半径和高脱酚的自由能。这里,我们设计了具有高比表面和可调谐孔隙率的3D蜂窝状等碳碳(HHPC)的环保生产的有效途径,用商业氧化镁微粒作为模板和碳酸氢钾作为活化剂。与以前的作品不同,氧化镁微粒不仅显示出无聚集和低成本,而且具有良好的结构稳定性,这起到了实现独特的3D蜂窝状等级结构的关键作用。受益于大表面,高中孔含量和蜂窝状等分层结构,HHPC-6样品表明了所需的电化学性能作为ZHSC的阴极,最大的特定容量可达147mAhg(-1)0.2克(-1),令人印象深刻的速率性能(48.3%的容量保持在50 a g(-1)),超高特定功率(40 kW kg(-1),56.7 wh kg(-1))。该策略将在ZHSCS应用中制造纳米碳的制造引导功能。

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