Yang Yu, Ng Sze-Wing, Chen Dongdong, Chang Jian, Wang Dongrui, Shang Jian, Huang Qiyao, Deng Yonghong, Zheng Zijian
Laboratory for Advanced Interfacial Materials and Devices, Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hong Kong S.A.R., China.
Department of Materials Science & Engineering, Southern University of Science and Technology, Shenzhen, 518055, China.
Small. 2019 Nov;15(48):e1902071. doi: 10.1002/smll.201902071. Epub 2019 Jul 11.
High-performance supercapacitors (SCs) are important energy storage components for emerging wearable electronics. Rendering low-temperature foldability to SCs is critically important when wearable devices are used in a cold environment. However, currently reported foldable SCs do not have a stable electrochemical performance at subzero temperatures, while those that are performing are not foldable. Herein, a freestanding pure-carbon-based porous electrode, namely, lamellar porous carbon stack (LPCS), is reported, which enables stable low-temperature-foldable SCs. The LPCS, which is fabricated with a simple vacuum filtration of a mixture of carbon fibers (CFs), holey reduced graphene oxides (HRGOs), and carbon nanotubes (CNTs), possesses a lamellar stacking of porous carbon thin sheets, in which the CFs act as the skeleton and the HRGOs and CNTs act as binders. The unique structure leads to excellent compression resilience, high foldability, and high electronic and ionic conductivity. SCs made with the LPCS electrodes and ionic liquid electrolyte show a high energy density (2.1 mWh cm at 2 mA cm ), low-temperature long lifetime (95% capacity after 10 000 cycles at -30 °C), and excellent low-temperature foldability (86% capacity after 1000 folding cycles at -30 °C).
高性能超级电容器(SCs)是新兴可穿戴电子产品的重要储能组件。当可穿戴设备在寒冷环境中使用时,赋予SCs低温可折叠性至关重要。然而,目前报道的可折叠SCs在零下温度下没有稳定的电化学性能,而性能良好的SCs又不可折叠。在此,报道了一种独立的纯碳基多孔电极,即层状多孔碳堆叠(LPCS),它能实现稳定的低温可折叠SCs。LPCS通过对碳纤维(CFs)、多孔还原氧化石墨烯(HRGOs)和碳纳米管(CNTs)的混合物进行简单的真空过滤制备而成,具有多孔碳薄片的层状堆叠结构,其中CFs作为骨架,HRGOs和CNTs作为粘合剂。这种独特的结构导致了优异的压缩弹性、高可折叠性以及高电子和离子导电性。用LPCS电极和离子液体电解质制成的SCs表现出高能量密度(在2 mA cm 时为2.1 mWh cm )、低温长寿命(在-30°C下经过10000次循环后容量保持95%)以及优异的低温可折叠性(在-30°C下经过1000次折叠循环后容量保持86%)。