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用于超级电容器的性能增强型活性炭电极,兼具石墨烯改性集流体和石墨烯导电添加剂

Performance-Enhanced Activated Carbon Electrodes for Supercapacitors Combining Both Graphene-Modified Current Collectors and Graphene Conductive Additive.

作者信息

Wang Rubing, Qian Yuting, Li Weiwei, Zhu Shoupu, Liu Fengkui, Guo Yufen, Chen Mingliang, Li Qi, Liu Liwei

机构信息

Key Laboratory of Nanodevices and Applications, Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences, Suzhou 215123, China.

School of Nano Technology and Nano Bionics, University of Science and Technology of China, Hefei 230026, China.

出版信息

Materials (Basel). 2018 May 15;11(5):799. doi: 10.3390/ma11050799.

Abstract

Graphene has been widely used in the active material, conductive agent, binder or current collector for supercapacitors, due to its large specific surface area, high conductivity, and electron mobility. However, works simultaneously employing graphene as conductive agent and current collector were rarely reported. Here, we report improved activated carbon (AC) electrodes (AC@G@NiF/G) simultaneously combining chemical vapor deposition (CVD) graphene-modified nickel foams (NiF/Gs) current collectors and high quality few-layer graphene conductive additive instead of carbon black (CB). The synergistic effect of NiF/Gs and graphene additive makes the performances of AC@G@NiF/G electrodes superior to those of electrodes with CB or with nickel foam current collectors. The performances of AC@G@NiF/G electrodes show that for the few-layer graphene addition exists an optimum value around 5 wt %, rather than a larger addition of graphene, works out better. A symmetric supercapacitor assembled by AC@G@NiF/G electrodes exhibits excellent cycling stability. We attribute improved performances to graphene-enhanced conductivity of electrode materials and NiF/Gs with 3D graphene conductive network and lower oxidation, largely improving the electrical contact between active materials and current collectors.

摘要

由于石墨烯具有大的比表面积、高导电性和电子迁移率,它已被广泛应用于超级电容器的活性材料、导电剂、粘结剂或集流体中。然而,同时使用石墨烯作为导电剂和集流体的研究报道很少。在此,我们报道了一种改进的活性炭(AC)电极(AC@G@NiF/G),它同时结合了化学气相沉积(CVD)石墨烯修饰的泡沫镍(NiF/Gs)集流体和高质量的少层石墨烯导电添加剂,而非炭黑(CB)。NiF/Gs和石墨烯添加剂的协同效应使得AC@G@NiF/G电极的性能优于使用CB或泡沫镍集流体的电极。AC@G@NiF/G电极的性能表明,对于少层石墨烯的添加量,存在一个约5 wt%的最佳值,而不是添加更多的石墨烯效果更好。由AC@G@NiF/G电极组装的对称超级电容器表现出优异的循环稳定性。我们将性能的提升归因于石墨烯增强了电极材料的导电性,以及具有三维石墨烯导电网络且氧化程度较低的NiF/Gs,这在很大程度上改善了活性材料与集流体之间的电接触。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/005c/5978176/cd66d9adaca3/materials-11-00799-g001a.jpg

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