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Facile synthesis of mesoporous CoFe mixed oxide from MOF as advanced electrode material for supercapacitor

机译:MOF介孔CoFe混合氧化物的简易合成方法及其作为超级电容器的先进电极材料

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In this work, a submicron-sized mesoporous spinel ferrite (CoxFe3-xO4, MCFO) material derived from MOF was prepared through a convenient hydrothermal method and subsequent calcination stage. The optimized MCFO-1 material has a high specific surface area of 141.2 m(2) g(-1), surpassing most previously reported spinel ferrite materials. As electrode material for supercapacitor, it shows improved electrochemical properties with high specific capacity (973.1 F g(-1) at 1 A g(-1)), which may be due to the sufficient active sites from highly mesoporous structure, and appropriate cooperativity of Co and Fe. Moreover, the submicron-sized structure effectively restrains the architecture collapse during repeated charge and discharge. Consequently, the specific capacity of MCFO-1 retained 72.9 of original capacity after 5000 cycles at 10 A g(-1). These results indicate that the as-synthesized MCFO electrode material is one of the potential candidates for high-performance supercapacitor.
机译:本工作通过方便的水热法和随后的煅烧阶段制备了源自MOF的亚微米级介孔尖晶石铁氧体(CoxFe3-xO4,MCFO)材料。优化后的MCFO-1材料具有141.2 m(2) g(-1)的高比表面积,超过了之前报道的大多数尖晶石铁氧体材料。作为超级电容器的电极材料,其电化学性能得到改善,比容量高(1 A g(-1)时为973.1 F g(-1)),这可能是由于高度介孔结构具有足够的活性位点,以及Co和Fe的适当协同作用。此外,亚微米级结构有效抑制了反复充放电过程中的结构坍塌。因此,MCFO-1在10 A g(-1)下循环5000次后,比容量仍保持原始容量的72.9%。这些结果表明,合成的MCFO电极材料是高性能超级电容器的潜在候选材料之一。

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