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首页> 外文期刊>Journal of Energy Storage >Graphene Foam (GF)/Manganese Oxide (MnO_2) Nanocomposites for High Performance Supercapacitors
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Graphene Foam (GF)/Manganese Oxide (MnO_2) Nanocomposites for High Performance Supercapacitors

机译:石墨烯泡沫(GF)/氧化锰(MNO_2)高性能超级电容器的纳米复合材料

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摘要

We report supercapacitive characteristics of hierarchically porous architectured graphene foam (GF)/manganese oxide (MnO2) nanocomposites fabricated via a simple two-step synthesis route. A polyurethane (PU) foam with graphene flakes adsorbed onto the pore walls is pyrolyzed to obtain GF. The MnO2 is then electrochemically deposited onto GF to form a GF/MnO2 (with a conductivity of 2.85 and 1.1 Sm-1, respectively) nanocomposite. The GF is an ideal scaffold template for electrochemical deposition of MnO2 and fast ion transport from MnO2 to GF. The GF/MnO2 supercapacitor shows excellent specific capacitance (672 F g(-1)), rate capability (85% capacity retention over 1 to 20 A g(-1)), and long cycle life (2% capacity loss after 10000 charge/discharge cycles) for 0.5 mg cm(-2) MnO2 loading. Furthermore, the optimized supercapacitor delivers a specific energy of 95 Wh kg(-1) at a specific power of 1 kW kg(-1), which is substantially higher than that of most of the reported GF based supercapacitors. The results obtained here may pave the way for the development of commercial supercapacitors for future energy storage systems.
机译:我们报告了通过简单的两步合成途径制造的分层多孔架构石墨烯泡沫(GF)/锰氧化物(MNO2)纳米复合材料的超级电容特性。具有吸附在孔壁上的石墨烯薄片的聚氨酯(PU)泡沫被热解用于获得GF。然后将MnO 2电化学沉积在GF上以形成GF / MNO 2(分别为2.85和1.1M-1的电导率)纳米复合材料。 GF是用于MNO2的电化学沉积的理想支架模板和从MnO 2到GF的快速离子传输。 GF / MNO2超级电容器显示出优异的特定电容(672V(-1)),速率能力(85%容量保持超过1〜20 a g(-1)),长循环寿命(10000电荷后2%的容量损耗/放电循环)0.5mg cm(-2)mnO2负荷。此外,优化的超级电容器以1kW kg(-1)的特定功率提供95WH kg(-1)的特定能量,其基本上高于总基于GF的超级电容器的功率。这里获得的结果可以为未来的能量储存系统开发商业超级电容器的开发。

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