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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Designed construction of yolk-shell structured trimanganese tetraoxide nanospheres via polar solvent-assisted etching and biomass-derived activated porous carbon materials for high-performance asymmetric supercapacitors
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Designed construction of yolk-shell structured trimanganese tetraoxide nanospheres via polar solvent-assisted etching and biomass-derived activated porous carbon materials for high-performance asymmetric supercapacitors

机译:通过极性溶剂辅助蚀刻和生物质衍生的活化多孔多孔碳材料设计蛋黄壳结构的三烷基四烷基纳米球的结构,用于高性能不对称超级电容器

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摘要

Recently, yolk-shell structured electrode materials have attracted increasing interest in supercapacitors (SCs) due to their high surface area, good electrochemical activity and excellent mechanical stability towards superior energy storage performance. However, the synthesis strategies to prepare such yolk-shell structured materials without using chemical surfactants/solid templates are still inferior. Herein, a facile and cost-effective strategy to design yolk-shell structured trimanganese tetraoxide nanospheres (Mn3O4 NSs) with a distinctive core-void-shell configuration to use as an efficient positive electrode material in asymmetric SCs is demonstrated. Specifically, the yolk-shell structured Mn3O4 NSs were prepared by the inclusion of water droplets to the manganese precursor-isopropyl alcohol system, which facilitates the inside-out Ostwald ripening process to construct a yolk-shell-like configuration with porous properties. In aqueous electrolyte solution, the corresponding material exhibited a high specific capacitance (211.36 F g(-1) at a current density of 0.5 A g(-1)), a good rate capability (79.4% at 10 A g(-1)) and an excellent cycling stability (92% after 2000 cycles) compared to its solid counterparts. Meanwhile, a low-cost material based on biomass-derived activated carbon with a honeycomb-like structure is also prepared using waste corrugated boxes, which exhibits a reliable electrochemical performance for use as a negative electrode material. Moreover, the fabricated asymmetric SC using both electrode materials offers a maximum potential window of 2 V with higher energy density (19.47 W h kg(-1)) and power density (2263.89 W kg(-1)) values, which can effectively power up commercial light-emitting diodes for practical applications.
机译:最近,由于其高表面积,良好的电化学活性和优异的能量储存性能,因此yolk-shell结构电极材料引起了超级电容器(SCs)的兴趣越来越兴趣。然而,在不使用化学表面活性剂/固体模板的情况下制备这种蛋白质壳结构材料的合成策略仍然差。在此,对设计蛋白壳结构的细小烷基甲醚纳米球(MN3O4 NSS)具有独特的核 - 空隙壳构造以用作不对称SCS中的有效正电极材料的蛋白质 - 壳结构化的细长烷基四烷基纳球(MN3O4 NSS)的容易和经济效率的策略进行了说明。具体地,通过将​​水滴含有到锰前体 - 异丙醇系统来制备蛋黄 - 壳结构MN3O4 NSS,这促进了内外的OSTWALD成熟方法,以构建具有多孔性质的蛋黄壳样构型。在水性电解质溶液中,相应的材料在电流密度为0.5Ag(-1))的高比电容(211.36fg(-1),良好的速率能力(79.4%,10 a g(-1)与其固体对应物相比,优异的循环稳定性(2000次循环后92%)。同时,还使用废像瓦楞纸箱制备基于生物质衍生的活性炭的低成本材料,其具有蜂窝状的盒,其表现出用于负极材料的可靠电化学性能。此外,使用两个电极材料的制造不对称SC提供了2 V的最大潜在窗口,具有较高的能量密度(19.47WH kg(-1))和功率密度(2263.89W kg(-1))值,可以有效地电力用于实际应用的商业发光二极管。

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