MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, Key Laboratory of Adsorption and Separation Materials & Technologies of Zhejiang Province, Zhejiang University , 38 Zheda Road, Hangzhou 310027, China.
ACS Nano. 2017 Nov 28;11(11):11056-11065. doi: 10.1021/acsnano.7b05092. Epub 2017 Oct 18.
Carbon textiles are promising electrode materials for wearable energy storage devices owing to their conductive, flexible, and lightweight features. However, there still lacks a perfect choice for high-performance carbon textile electrodes with sufficient electrochemical activity. Graphene fiber fabrics (GFFs) are newly discovered carbon textiles, exhibiting various attractive properties, especially a large variability on the microstructure. Here we report the fabrication of hierarchical GFFs with significantly enlarged specific surface area using a hydrothermal activation strategy. By carefully optimize the activation process, the hydrothermally activated graphene fiber fabrics (HAGFFs) could achieve an areal capacitance of 1060 mF cm in a very thin thickness (150 μm) and the capacitance is easily magnified by overlaying several layers of HAGFFs, even up to a record value of 7398 mF cm. Meanwhile, a good rate capability and a long cycle life are also attained. As compared with other carbon textiles, including the commercial carbon fiber cloths, our HAGFFs present much better capacitive performance. Therefore, the mechanically stable, flexible, conductive, and highly active HAGFFs have provided an option for high-performance textile electrodes.
碳纺织品由于其导电、柔韧和轻质的特点,是有前途的可穿戴储能器件的电极材料。然而,对于具有足够电化学活性的高性能碳纺织电极,仍然缺乏完美的选择。石墨烯纤维织物(GFFs)是新发现的碳纺织品,具有各种有吸引力的特性,特别是微观结构具有很大的可变性。在这里,我们报告了使用水热激活策略制备具有显著增大比表面积的分级 GFFs。通过仔细优化激活过程,水热激活的石墨烯纤维织物(HAGFFs)可以在非常薄的厚度(150μm)下实现 1060mFcm 的面电容,并且通过叠加几层 HAGFFs,电容很容易放大,甚至达到 7398mFcm 的记录值。同时,还获得了良好的倍率性能和长循环寿命。与其他碳纺织品相比,包括商业碳纤维布,我们的 HAGFFs 具有更好的电容性能。因此,机械稳定、柔韧、导电和高活性的 HAGFFs 为高性能纺织电极提供了一种选择。