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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >A scalable strategy for carbon derived from complex six-membered ring-like tannin on glass fiber for 1D/2D flexible all solid state supercapacitors
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A scalable strategy for carbon derived from complex six-membered ring-like tannin on glass fiber for 1D/2D flexible all solid state supercapacitors

机译:用于玻璃纤维上的复合六元环状单宁衍生的碳源的可扩展策略,用于1d / 2d柔性所有固态超级电容器

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Carbon materials have attracted increasing attention and have been used as extraordinary electrodes for high-performance supercapacitors (SCs) to satisfy the demand for energy reservation and transformation due to their fast current response and excellent cycling stability. Herein, we provided a novel approach to prepare 2D flexible electrode which was composed of glass fabric coated with tannin derived carbon (CFTC). In this strategy, each glass fiber with outstanding mechanical flexibility in the center was served as support and the outer ultrathin carbon coating derived from tannin play the role of active material, forming the coaxial structure. Two pieces of as-prepared GFTC with the highest specific capacitance of 315.7 mF cm(-2) were assembled into a 2D all-solid-state symmetric supercapacitor (ASSC) which possessed the largest energy density of 6.03 mu Wh cm(-2) and the superior cycling stability with 93% capacitance retention after 10,000 cycles at 2 mA cm(-2). Furthermore, the 2D ASSC realized practical application by coordinating with solar panels as a power supply. More importantly, this strategy can also be extended to prepare 1D flexible electrode by using glass yarn as support instead of glass fabric. The assembled 1D ASSC could be used as a wristband to be applied in wearable electronics. Thus, this work shows a new way to fabricate 1D/2D flexible electrodes and SCs with high performance for next-generation energy storage devices. (C) 2018 Elsevier B.V. All rights reserved.
机译:碳材料引起了越来越多的关注,并且已被用作高性能超级电容器(SCS)的非凡电极,以满足由于其快速电流响应和优异的循环稳定性而导致对能量保留和转换的需求。在此,我们提供了一种制备2D柔性电极的新方法,该电极由涂有单宁衍生的碳(CFTC)的玻璃织物构成。在该策略中,每个玻璃纤维在中心的突出机械柔韧性中均用作载体,外部超超薄碳涂料来自单宁的作用,形成了同轴结构的活性材料。具有315.7mF cm(-2)的最高特定电容的两件用的GFTc被组装成2d全固态对称超级电容器(ASSC),其具有6.03μm(-2)的最大能量密度在2mA cm(-2)的10,000次循环后,循环稳定性具有93%的电容稳定性。此外,2D ASSC通过将太阳能电池板配合为电源来实现实际应用。更重要的是,通过使用玻璃纱作为支撑而不是玻璃织物,还可以扩展该策略以准备1D柔性电极。组装的1D ASSC可以用作腕带以便在可穿戴电子设备中应用。因此,该工作显示了一种用于制造1D / 2D柔性电极和具有高性能的新方法的新方法。 (c)2018年elestvier b.v.保留所有权利。

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