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Hierarchically porous carbon black/graphene hybrid fibers for high performance flexible supercapacitors

机译:适用于高性能柔性超级电容器的等级多孔炭黑/石墨烯杂交纤维

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摘要

To meet the rapid development of lightweight, flexible, and even wearable electronics, it is critically important to develop matchable, highly efficient energy-storage devices for their energy supply. Graphene fiber-based supercapacitors (SCs) are considered as one of the promising candidates because of the superior mechanical and electrical properties of graphene fibers. However, SCs based on neat graphene fibers generally suffer a low capacitance and poor rate performance, which largely restrict their potentially wide applications. Here, we report a simple, low cost and scalable wet-spinning method to fabricate porous carbon black/reduced graphene oxide (CB/rGO) hybrid fibers. The hybrid fibers possess very high surface area (254.6 m ~(2) g ~(?1) ) and a hierarchically porous nanostructure. A flexible solid-state SC was assembled using the hybrid fiber, which exhibited high capacitance (97.5 F cm ~(?3) ), excellent cycling stability (95.9% capacitance retention over 2000 cycles), superior energy density (2.8 mW h cm ~(?3) ) and ultrahigh power density (1200 mW cm ~(?3) ). Its physical shape and electrochemical performance is also very well maintained under long-time periodic mechanical deformation that is particularly promising for wearable electronic devices.
机译:为了满足轻质,灵活,甚至可穿戴电子产品的快速发展,为其能源供应开发可匹配,高效的储能设备是至关重要的。由于石墨烯纤维的优异机械和电性能,石墨烯纤维基超级电容器(SCS)被认为是有前途的候选者之一。然而,基于纯石墨烯光纤的SCS通常遭受低电容和差的性能,这在很大程度上限制了它们的潜在广泛的应用。在这里,我们报告了一种简单,低成本和可伸缩的湿纺方法,用于制造多孔炭黑/还原氧化物(CB / RGO)杂化纤维。杂交纤维具有非常高的表面积(254.6m〜(2)G〜(α1))和分层多孔纳米结构。使用杂交纤维组装柔性固态SC,其表现出高电容(97.5Fcm〜(α3)),优异的循环稳定性(95.9%超过2000个循环的电容潴留),能量密度优异(2.8 mW H cm〜 (?3))和超高功率密度(1200 mW cm〜(?3))。其物理形状和电化学性能也在长期定期机械变形下保持非常好,这对于可穿戴电子设备特别有前途。

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