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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Hierarchical construction of high-performance all-carbon flexible fiber supercapacitors with graphene hydrogel and nitrogen-doped graphene quantum dots
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Hierarchical construction of high-performance all-carbon flexible fiber supercapacitors with graphene hydrogel and nitrogen-doped graphene quantum dots

机译:具有石墨烯水凝胶和氮掺杂石墨烯量子点的高性能全碳柔性纤维超级电容器的层次结构

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摘要

Carbon-based flexible fiber-based supercapacitors (FFSCs) are promising power sources for portable and wearable electronics, but their applications are limited by low energy density due to a lower specific capacitance of common carbon materials. We fabricated ternary all-carbon fiber electrodes (N-GQD/GH/CF) with improved electrochemical performance. In this structure, graphene hydrogel (GH) was grown on carbon fibers (CFs) to form a 3D interconnected porous network (GH/CF), and nitrogen-doped graphene quantum dots (N-GQDs) with high pseudocapacitive activity were electrodeposited into the GH/CF network. The ternary N-GQD/GH/CF hybrid electrode delivered a volumetric capacitance of 93.7 F cm(-3) at 20 mA cm(-3), which was around 7 times higher than that of the GH/CF, while the capacitance retention after 5000 cycles reached 87.9%, which was only a little lower than that of the GH/CF electrode (90.2%). It indicates the introduction of N-GQDs drastically improves the capacitance of the FFSCs without sacrificing the cycle stability. All-carbon asymmetric FFSCs were assembled using N-GQD/GH/CF as positive electrode and GH/CF as negative electrode. The assembled FFSCs exhibited a high energy density of 3.6 mW h cm(-3) at power density of 35.6 mW cm(-3) owing to the wider potential window (2 V) and the higher volumetric capacitance as well as excellent flexibility and cycling stability. (C) 2019 Elsevier Ltd. All rights reserved.
机译:基于碳的柔性纤维的超级电容器(FFSCs)是便携式和可穿戴电子产品的有前途的电源,但由于普通碳材料的较低电容,它们的应用受到低能量密度的限制。我们制造了各种 - 碳纤维电极(N-GQD / GH / CF),具有改善的电化学性能。在该结构中,石墨烯水凝胶(GH)在碳纤维(CFS)上生长,形成3D互连的多孔网络(GH / CF),氮掺杂石墨烯量子点(N-GQDS)被电吞吐为GH / CF网络。三元N-GQD / GH / CF混合电极在20 mA cm(-3)的体积电容为93.7 f cm(-3),其比GH / CF高约7倍,而电容保持在5000次循环达到87.9%后,其仅低于GH / CF电极(90.2%)。它表示N-GQD的引入大大改善了FFSC的电容而不牺牲循环稳定性。使用N-GQD / GH / CF作为正电极和GH / CF作为负电极组装全碳非对称FFSC。由于较宽的电位窗口(2V)和较高的体积电容以及较高的灵活性和循环,所组装的FFSCS在35.6 mW cm(-3)的高能量密度为35.6 mw厘米(-3)的高能量密度为35.6 mw厘米(-3),以及出色的柔韧性和循环稳定。 (c)2019年elestvier有限公司保留所有权利。

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