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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Enhanced Surface Area, Graphene Quantum Dots, and Functional Groups for the Simple Acid-Treated Carbon Fiber Electrode of Flexible Fiber-Type Solid-State Supercapacitors without Active Materials
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Enhanced Surface Area, Graphene Quantum Dots, and Functional Groups for the Simple Acid-Treated Carbon Fiber Electrode of Flexible Fiber-Type Solid-State Supercapacitors without Active Materials

机译:增强的表面积,石墨烯量子点和柔性纤维型固态超级电容器的简单酸处理的碳纤维电极的官能团,无活性材料

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Flexible fiber-type solid-state supercapacitors (FSCs) are demanded for energy storage of wearable soft electronics. A flexible carbon fiber (CF) with high electrical conductivity and good energy storage ability can act as the current collector and the active material simultaneously. Improving the energy storage ability of the CF without depositing active materials is highly promising to avoid active materials from peeling off, especially under bending conditions. In this study, the CF is treated with acid mixtures containing different HNO3 to H2SO4 ratios. The roughened surface and the production of graphene quantum dots and functional groups are achieved for the acid-treated CF, especially for the CF treated with the acid mixtures. The largely enhanced specific capacitance (C-L) is first obtained for the optimized CF electrode (641.08 mF/cm at 5 mV/s) treated with the acid mixture containing the HNO3 to H2SO4 ratio of 1 to 3. The FSC also shows a maximum energy density of 16.57 mu W h/cm at the power density of 62.50 mu W/cm, as well as a C-L retention of 77% and Coulombic efficiency of 100% in 5000 times of a charge/discharge cycling process. Excellent flexibility is also attained for the FSC with no shape distortion of cyclic voltammetry curves measured under the bending angle of 180 degrees and with 1000 times of repeated bending. This work proposes a simple acid treatment to largely enhance the energy storage ability of pure CF electrodes. The bifunctional substance with current collecting and energy storing abilities is expected to be well developed in the future for applying on numerous efficient flexible energy storage devices.
机译:要求柔性光纤型固态超级电容器(FSCS)要求可穿戴软电子的储能。具有高导电性和良好储能能力的柔性碳纤维(CF)可以同时用作集电器和活性材料。改善CF的能量储存能力而不沉积活性材料是非常有希望的,以避免活性材料剥离,特别是在弯曲条件下。在该研究中,CF用含有不同HNO 3至H 2 SO 4比的酸性混合物处理。粗糙表面和石墨烯量子点和官能团的制备用于酸处理的CF,特别是对于用酸混合物处理的CF。首先获得大量增强的特异性电容(CL)对于用含有HNO3至H 2 SO 4比的酸混合物处理的优化的CF电极(5mV / s处5mV / s)的优化的CF电极(641.08mF / cm)获得1至3. FSC还显示出最大能量密度为16.57μWH/ cm,功率密度为62.50μm/ cm,以及CL保留77%,Coulombic效率为5000次充电/放电循环过程中的500%。对于FSC而言,也达到了优异的柔韧性,其在弯曲角度为180度的弯曲角度下测量循环伏安法曲线的形状变形,并且重复弯曲的1000次。这项工作提出了一种简单的酸处理,以大大提高纯CF电极的储能能力。预计具有电流收集和能量储存能力的双功能物质将在未来开发,以应用于许多有效的灵活能量存储设备。

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