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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Hydrothermal Synthesis of Nanoflake-Assembled (Ni0.5Co0.5)(0.85)Se Microspheres as the Cathode and Reduced Graphene Oxide/Porous Fe2O3 Nanospheres Composite as the Anode for Novel Alkaline Aqueous Batteries
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Hydrothermal Synthesis of Nanoflake-Assembled (Ni0.5Co0.5)(0.85)Se Microspheres as the Cathode and Reduced Graphene Oxide/Porous Fe2O3 Nanospheres Composite as the Anode for Novel Alkaline Aqueous Batteries

机译:纳米蛋白组装(Ni0.5COO 0.5)(0.85)Se微球的水热合成作为阴极和还原的石墨烯氧化物/多孔Fe2O3纳米组合物作为新型碱性含水电池的阳极

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摘要

The exploitation of new energy storage systems has gradually drawn researchers' interests in recent years. Herein, a novel alkaline aqueous battery is fabricated based on nanoflake-assembled (Ni0.5Co0.5)(0.85)Se microspheres and reduced graphene oxide (rGO)/porous Fe2O3 nanospheres composite as the cathode and anode, respectively. The nanoflake-assembled (Ni0.5Co0.5)(0.85)Se microspheres are prepared through a two-step hydrothermal approach, while the rGO/porous Fe2O3 nanospheres composite is synthesized by a facile one-pot ionic liquid-assisted hydrothermal approach. On account of the unique structural features as well as excellent electrochemical behaviors, the assembled novel (Ni0.5Co0.5)(0.85)Se//rGO/Fe2O3 alkaline aqueous battery achieves a great specific energy of 37.2 W h kg(-1) at a power density of 500 W kg(-1) or an ultrahigh specific power of 10 kW kg(-1) at a reasonable specific energy of 11.9 W h kg(-1) and excellent cycling performance with 84.5% of initial capacity retention at 3 A g(-1) after 2000 cycles. These intriguing results suggest that the reasonable design and coupling of the cathode and anode are crucially significant for fabricating high-performance energy storage systems. Such an alkaline aqueous battery is expected to be one of highly prospective energy storage systems for practical applications.
机译:近年来,新能源储存系统的开发逐渐绘制了研究人员的利益。在此,基于纳米蛋白组装(Ni0.5CO0.5)(0.85)SE微球和还原的氧化物(RGO)/多孔Fe2O3纳米复合材料作为阴极和阳极,制造新的碱性含水电池。通过两步水热方法制备纳米蛋白组装(Ni0.5COO 0.5)(0.85)SE微球,而RGO /多孔Fe2O3纳米球复合材料通过容易的一锅离子液辅助水热方法合成。由于独特的结构特征和优异的电化学行为,组装的新颖(Ni0.5Co0.5)(0.85)SE // rgo / Fe2O3碱性水电池达到37.2 W H kg(-1)的巨大能量以500 W kg(-1)的功率密度或10 kW kg(-1)的超高特定功率,在合理的特定能量为11.9 w h kg(-1)和优异的循环性能,初始容量保留的84.5%在2000次循环后在3A(-1)。这些有趣结果表明阴极和阳极的合理设计和耦合对于制造高性能储能系统是至关重要的。这种碱性水电池预计将是实际应用的高潜能存储系统之一。

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