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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Functional Group-Dependent Supercapacitive and Aging Properties of Activated Carbon Electrodes in Organic Electrolyte
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Functional Group-Dependent Supercapacitive and Aging Properties of Activated Carbon Electrodes in Organic Electrolyte

机译:有机电解质中活性碳电极的官能团依赖性超特征和老化性能

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摘要

The concentrations of surface functional groups on activated carbon (AC) are manipulated via heat treatment at various temperatures. The carboxyl (O-C = 0) population clearly decreases at 600 degrees C, whereas the lactone (RO-C = 0) and phenol (C-OH) populations decrease if the temperature exceeds 750 degrees C. Their effects on electrode capacitance, leakage current, and gas evolution are systematically investigated in 1 M tetraethylammonium tetrafluoroborate/propylene carbonate electrolyte. The assembled symmetric supercapacitors are also subjected to an aging test, where the cells are held at 2.5 V and 70 degrees C. The decreased functional group populations significantly reduce gassing and improve the cell durability; the mechanisms are explored using electrochemical impedance spectroscopy and post-mortem SEM. Nevertheless, the AC surface area drops dramatically at 850 degrees C, resulting in a considerable reduction in capacitance. A rational control of heat-treatment temperature is critical for obtaining AC with balanced supercapacitor performance.
机译:在各种温度下通过热处理操纵活性炭(AC)上的表面官能团的浓度。甲基(OC = 0)群体在600℃下明显降低,而内酯(RO-C = 0)和苯酚(C-OH)群体如果温度超过750℃,则降低它们对电极电容,漏电流的影响并且在1M四乙基四氟硼酸盐/丙烯酯电解质中系统地研究了气体进化。组装的对称超级电容器也经过老化试验,其中细胞保持在2.5 V和70℃。降低的官能团群体显着降低了缓解和改善细胞耐久性;使用电化学阻抗光谱和后验验SEM探索该机制。然而,AC表面区域在850℃下急剧下降,导致电容显着降低。对热处理温度的合理控制对于获得具有平衡超级电容器性能的AC至关重要。

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