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Hierarchical Fe3O4@Fe2O3 Core-Shell Nanorod Arrays as High-Performance Anodes for Asymmetric Supercapacitors

机译:分层Fe3O4 @ Fe2O3核壳纳米棒阵列作为不对称超级电容器的高性能阳极

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Anode materials with relatively low capacitance remain a great challenge for asymmetric supercapacitors (ASCs) to pursue high energy density. Hematite (alpha-Fe2O3) has attracted intensive attention as anode material for ASCs, because of its suitable reversible redox reactions in a negative potential window (from 0 V to -1 V vs Ag/AgCl), high theoretical capacitance, rich abundance, and nontoxic features. Nevertheless, the Fe2O3 electrode cannot deliver large volumetric capacitance at a high rate, because of its poor electrical conductivity (similar to 10(-14) S/cm), resulting in low power density and low energy density. In this work, a hierarchical heterostructure comprising Fe3O4@Fe2O3 core-shell nanorod arrays (NRAs) is presented and investigated as the negative electrode for ASCs. Consequently, the Fe3O4@Fe2O3 electrode exhibits superior supercapacitive performance, compared to the bare Fe2O3 and Fe3O4 NRAs electrodes, demonstrating large volumetric capacitance (up to 1206 F/cm(3) with a mass loading of 1.25 mg/cm(2)), as well as good rate capability and cycling stability. The hybrid electrode design is also adopted to prepare Fe3O4@MnO2 core-shell NRAs as the positive electrode for ASCs. Significantly, the as-assembled 2 V ASC device delivered a high energy density of 0.83 mWh/cm(3) at a power density of 15.6 mW/cm(3). This work constitutes the first demonstration of Fe3O4 as the conductive supports for Fe2O3 to address the concerns about its poor electronic and ionic transport.
机译:对于不对称超级电容器(ASC)追求高能量密度而言,具有相对较低电容的阳极材料仍然是一个巨大的挑战。赤铁矿(α-Fe2O3)作为ASC的负极​​材料备受关注,因为它在负电势窗口(相对于Ag / AgCl从0 V到-1 V)中合适的可逆氧化还原反应,高理论电容,丰富的丰度和无毒功能。然而,Fe2O3电极由于其较差的电导率(类似于10(-14)S / cm)而不能以高速率传递大体积电容,从而导致低功率密度和低能量密度。在这项工作中,提出了由Fe3O4 @ Fe2O3核-壳纳米棒阵列(NRA)组成的分层异质结构,并作为ASC的负极​​进行了研究。因此,与裸露的Fe2O3和Fe3O4 NRAs电极相比,Fe3O4 @ Fe2O3电极表现出卓越的超电容性能,显示出大的体积电容(高达1206 F / cm(3),质量负载为1.25 mg / cm(2)),以及良好的速率能力和循环稳定性。还采用混合电极设计制备Fe3O4 @ MnO2核壳型NRAs作为ASCs的正极。重要的是,组装后的2 V ASC设备以15.6 mW / cm(3)的功率密度提供了0.83 mWh / cm(3)的高能量密度。这项工作首次证明了Fe3O4作为Fe2O3的导电载体,解决了其对电子和离子迁移不良的担忧。

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