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首页> 外文期刊>Journal of nanoscience and nanotechnology >Fabrication of Mesoporous C-60/Carbon Hybrids with 3D Porous Structure for Energy Storage Applications
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Fabrication of Mesoporous C-60/Carbon Hybrids with 3D Porous Structure for Energy Storage Applications

机译:具有3D多孔结构的介孔C-60 /碳杂交机的制备,用于储能应用

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We report on the synthesis of 3D mesoporous fullerene/carbon hybrid materials with ordered porous structure and high surface area by mixing the solution of fullerene and sucrose molecules in the nanochannels of 3D mesoporous silica, KIT-6 via nanotemplating approach. The addition of sucrose molecules in the synthesis offers a thin layer of carbon between the fullerene molecules which enhances not only the specific surface area and the specific pore volume but also the conductivity of the hybrid materials. The prepared hybrids exhibit 3D mesoporous structure and show a much higher specific surface area than that of the pure mesoporous fullerene. The hybrids materials are used as the electrodes for supercapacitor and Li-ion battery applications. The optimised hybrid sample shows an excellent rate capability and a high specific capacitance of 254 F/g at the current density of 0.5 A/g, which is much higher than that of the pure mesoporous fullerene, mesoporous carbon, activated carbon and multiwalled carbon nanotubes. When used as the electrode for Li-ion battery, the sample delivers the largest specific capacity of 1067 mAhig upon 50 cycles at the current density of 0.1 A/g with stability. These results reveal that the addition of carbon in the mesoporous fullerene with 3D structure makes a significant impact on the electrochemical properties of the hybrid samples, demonstrating their potential for applications in Li-ion battery and supercapacitor devices.
机译:我们报道了通过纳米模板法将富勒烯和蔗糖分子溶液混合在3D介孔二氧化硅KIT-6的纳米通道中,合成具有有序多孔结构和高比表面积的3D介孔富勒烯/碳杂化材料。在合成过程中添加蔗糖分子在富勒烯分子之间提供了一层薄薄的碳,这不仅提高了杂化材料的比表面积和比孔体积,而且还提高了导电性。所制备的杂化物具有三维介孔结构,比纯介孔富勒烯具有更高的比表面积。混合材料用作超级电容器和锂离子电池应用的电极。优化后的杂化样品在电流密度为0.5a/g时具有优良的倍率性能和254f/g的高比电容,远高于纯介孔富勒烯、介孔碳、活性碳和多壁碳纳米管。当用作锂离子电池的电极时,样品在电流密度为0.1 A/g的情况下,在50次循环后,具有1067 mAhig的最大比容量和稳定性。这些结果表明,在具有三维结构的介孔富勒烯中添加碳对杂化样品的电化学性能有显著影响,表明其在锂离子电池和超级电容器器件中的应用潜力。

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