首页> 外文期刊>ACS applied materials & interfaces >Hierarchically MnO2-Nanosheet Covered Submicrometer-FeCo2O4-Tube Forest as Binder-Free Electrodes for High Energy Density All-Solid-State Supercapacitors
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Hierarchically MnO2-Nanosheet Covered Submicrometer-FeCo2O4-Tube Forest as Binder-Free Electrodes for High Energy Density All-Solid-State Supercapacitors

机译:MnO2-纳米片覆盖的亚微米级-FeCo2O4-管状森林作为无粘合剂电极用于高能量密度全固态超级电容器

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The current problem of the still relatively low energy densities of supercapacitors can be effectively addressed by designing electrodes hierarchically on micro- and nanoscale. Herein, we report the synthesis of hierarchically porous, nanosheet covered submicrometer tube forests on Ni foam. Chemical deposition and thermal treatment result in homogeneous forests of 750 nm diameter FeCo2O4 tubes, which after hydrothermal reaction in KMnO4 are wrapped in MnO2-nanosheet-built porous covers. The covers' thickness can be adjusted from 200 to 800 nm by KMnO4 concentration. An optimal thickness (380 nm) with a MnO2 content of 42 wt % doubles the specific capacitance (3.30 F cm(-2) at 1.0 mA cm(-2)) of the bare FeCo2O4-tube forests. A symmetric solid-state supercapacitor made from these binder-free electrodes achieves 2.52 F cm(-2) at 2 mA cm(-2), much higher than reported for capacitors based on similar core shell nanowire arrays. The large capacitance and high cell voltage of 1.7 V allow high energy and power densities (93.6 Wh kg(-1), 10.1 kW kg(-1)). The device also exhibits superior rate capability (71% capacitance at 20 mA cm(-2)) and remarkable cycling stability with 94% capacitance retention being stable after 1500 cycles.
机译:超级电容器的能量密度仍然相对较低的当前问题可以通过在微米级和纳米级上分层设计电极来有效解决。在本文中,我们报道了在镍泡沫上分层多孔,纳米片覆盖的亚微米管森林的合成。化学沉积和热处理产生了直径为750 nm的FeCo2O4管的均质林,该林在KMnO4中发生水热反应后被包裹在MnO2-纳米板建造的多孔覆盖物中。覆盖层的厚度可以通过KMnO4的浓度在200至800 nm之间调整。 MnO2含量为42 wt%的最佳厚度(380 nm)使裸FeCo2O4管林的比电容(在1.0 mA cm(-2)处的比电容(3.30 F cm(-2))加倍。由这些无粘合剂的电极制成的对称固态超级电容器在2 mA cm(-2)时可达到2.52 F cm(-2),远高于基于类似核壳纳米线阵列的电容器的报道。 1.7 V的大电容和高电池电压允许高能量和功率密度(93.6 Wh kg(-1),10.1 kW kg(-1))。该器件还具有出色的速率能力(在20 mA cm(-2)时为71%的电容)和出色的循环稳定性,其中1500次循环后94%的电容保持稳定。

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