Department of Chemical and Biological Engineering, Drexel University , 3141 Chestnut Street, 19104 Philadelphia, Pennsylvania, United States.
Department of Chemistry, Temple University , Philadelphia, Pennsylvania 19122, United States.
ACS Appl Mater Interfaces. 2017 Oct 4;9(39):33749-33757. doi: 10.1021/acsami.7b07479. Epub 2017 Sep 20.
A high-performance, self-standing solid-state supercapacitor is prepared by incorporating an ionic liquid (IL)-rich ionogel made with 95 wt % IL (1-ethyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide) and 5 wt % methyl cellulose, a polymer matrix, into highly interconnected 3-D activated carbon nanofiber (CNF) electrodes. The ionogel exhibits strong mechanical properties with a storage modulus of 5 MPa and a high ionic conductivity of 5.7 mS cm at 25 °C. The high-surface-area CNF-based electrode (2282 m g), obtained via an electrospinning technique, exhibits hierarchical porosity generated both in situ during pyrolysis and ex situ via KOH activation. The porous architecture of the CNF electrodes facilitates the facile percolation of the soft but mechanically durable ionogel film, thereby enabling intimate contact between porous nanofibers and the gel electrolyte interface. The supercapacitor demonstrates promising capacitive characteristics, including a gravimetric capacitance of 153 F g, a high specific energy density of 65 W h kg, and high cycling stability, with a capacitance fade of only 4% after 20 000 charge-discharge cycles at 1 A g. Moreover, device-level areal capacitances for the gel IL cell of 122 and 151 mF cm are observed at electrode mass loadings of 3.20 and 5.10 mg cm, respectively.
一种高性能、自立式固态超级电容器是通过将富含离子液体(IL)的离子凝胶与 95wt%的 IL(1-乙基-3-甲基咪唑双(三氟甲烷磺酰基)亚胺)和 5wt%的甲基纤维素,一种聚合物基质,结合到高度互连的 3D 活性炭纳米纤维(CNF)电极中制备的。该离子凝胶具有出色的机械性能,在 25°C 时存储模量为 5 MPa,离子电导率为 5.7 mS cm。通过静电纺丝技术获得的高表面积 CNF 基电极(2282 m g)在原位热解和通过 KOH 活化的外部分解过程中产生了分层多孔结构。CNF 电极的多孔结构便于柔软但机械耐用的离子凝胶膜的易于渗透,从而使多孔纳米纤维和凝胶电解质界面之间能够实现紧密接触。超级电容器表现出有前途的电容特性,包括 153 F g 的重量电容、65 W h kg 的高比能密度和高循环稳定性,在 1 A g 下 20000 次充放电循环后,电容衰减仅为 4%。此外,在电极质量负载分别为 3.20 和 5.10 mg cm 时,观察到凝胶 IL 电池的器件级面电容分别为 122 和 151 mF cm。