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Bottom-Up Fabrication of Activated Carbon Fiber for All-Solid-State Supercapacitor with Excellent Electrochemical Performance

机译:自底向上制造具有优异电化学性能的全固态超级电容器用活性碳纤维

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Activated carbon (AC) is the most extensively used electrode material for commercial electric double layer capacitors (EDLC) given its high specific surface area (SSA) and moderate cost. However, AC is primarily used in the forms of powders, which remains a big challenge in developing AC powders into continuous fibers. If AC powders can be processed into fiber, then they may be scaled up for practical applications to supercapacitors (SCs) and satisfy the rapid development of flexible electronics. Herein, we report a bottom-up method to fabricate AC fiber employing graphene oxide (GO) as both dispersant and binder. After chemical reduction, the fiber has high electrical conductivity (185 S m(-1)), high specific surface area (1476.5 m(2) g(-1)), and good mechanical flexibility. An all solid-state flexible SC was constructed using the prepared fiber as electrode, which is free of binder, conducting additive, and additional current collector. The fiber-shaped SC shows high capacitance (27.6 F cm(-3) or 43.8 F g(-1), normalized to the two-electrode volume), superior cyclability (90.4% retention after 10 000 cycles), and good bendability (96.8% retention after bending 1000 times).
机译:活性炭(AC)是商用双电层电容器(EDLC)的最广泛使用的电极材料,因为它具有较高的比表面积(SSA)和适中的成本。然而,AC主要以粉末形式使用,这对于将AC粉末发展成连续纤维仍然是巨大的挑战。如果可以将AC粉加工成纤维,则可以将它们按比例放大以用于实际应用中的超级电容器(SC),并满足柔性电子产品的快速发展。在此,我们报告了一种自下而上的方法,该方法使用氧化石墨烯(GO)作为分散剂和粘合剂来制造AC纤维。经过化学还原后,纤维具有高电导率(185 S m(-1)),高比表面积(1476.5 m(2)g(-1))和良好的机械柔韧性。使用制备的纤维作为电极构建全固态柔性SC,其中不含粘合剂,导电添加剂和附加集电器。纤维状SC显示出高电容(27.6 F cm(-3)或43.8 F g(-1),归一化为两电极体积),出色的可循环性(10000次循环后90.4%的保留率)和良好的可弯曲性(弯曲1000次后保留率为96.8%。

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