首页> 外文期刊>Electrochimica Acta >Flexible free-standing paper electrodes based on reduced graphene oxide/delta-NaxV2O5 center dot nH(2)O nanocomposite for high-performance aqueous zinc-ion batteries
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Flexible free-standing paper electrodes based on reduced graphene oxide/delta-NaxV2O5 center dot nH(2)O nanocomposite for high-performance aqueous zinc-ion batteries

机译:基于柔性的独立式纸电极,基于氧化石墨烯氧化物/Δ-naxv2O5中心点NH(2)O纳米复合材料,用于高性能水性锌离子电池

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摘要

Most recently, aqueous zinc-ion batteries (AZIBs) are the research focus because of their low cost, high safety, and eco-friendliness. In this respect, flexible binder-free electrodes have been investigated by several studies to keep pace with the development of wearable electronics. However, the mass loading of active materials in these electrodes is usually below 2 mg cm(-2), considerably limiting the areal capacity. Herein, we report a paper electrode prepared via a facile vacuum filtration technique with a high mass loading of 5 mg cm(-2) for the active material, namely, reduced graphene oxide (rGO)/delta-NaxV2O5 center dot nH(2)O nanocomposite. Thanks to the homogeneous distribution and synergistic effect of the active material, carbon nanotubes, and cellulose fibers, the electrode not only exhibits good mechanical property and high electrical conductivity but also displays impressive performances for AZIBs. It achieves an admirable areal specific capacity of 1.87 mAh cm(-2) (corresponding to 374.9 mAh g(-1) for the active material), substantially higher than that of other flexible binder-free electrodes for (hybrid) AZIBs. Meanwhile, this electrode also shows good rate capability and excellent long-term cyclability (with a capacity retention of 92% over 4000 cycles). This work opens new opportunities towards flexible free-standing electrodes. (C) 2019 Elsevier Ltd. All rights reserved.
机译:最近,锌离子电池(AZIB)是研究重点,因为它们的成本低,安全性高,生态友好性。在这方面,几种研究已经研究了柔性粘合剂电极,以跟上可穿戴电子产品的发展。然而,这些电极中的活性材料的质量负载通常低于2mgcm(-2),显着限制了面积容量。在此,我们报告了通过容易真空过滤技术制备的纸电极,该技术为活性材料的5mg cm(-2),即石墨烯(Rgo)/ delta-naxv2O5中心点NH(2) o纳米复合材料。由于活性物质,碳纳米管和纤维素纤维的均匀分布和协同作用,电极不仅表现出良好的机械性能和高导电性,而且还显示出尖塔的令人印象深刻的性能。它达到令人钦佩的面积特异性容量为1.87mAhcm(-2)(对应于活性物质的374.9mahg(-1)),基本上高于其他柔性粘合剂电极的(杂种)叠氮。同时,该电极还显示出良好的速率能力和优异的长期环绕性(容量保留超过4000次循环92%)。这项工作开辟了柔性独立电极的新机遇。 (c)2019 Elsevier Ltd.保留所有权利。

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