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Fabrication of electric papers of graphene nanosheet shelled cellulose fibres by dispersion and infiltration as flexible electrodes for energy storage

机译:通过分散和浸润作为柔性电极的储能电极,制造石墨烯纳米片的电纸纤维纤维纤维纤维

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摘要

An electrically conductive and electrochemically active composite paper of graphene nanosheet (GNS) coated cellulose fibres was fabricated via a simple paper-making process of dispersing chemically synthesized GNS into a cellulose pulp, followed by infiltration. The GNS nanosheet was deposited onto the cellulose fibers, forming a coating, during infiltration. It forms a continuous network through a bridge of interconnected cellulose fibres at small GNS loadings (3.2 wt%). The GNS/cellulose paper is as flexible and mechanically tough as the pure cellulose paper. The electrical measurements show the composite paper has a sheet resistance of 1063 Ω □~(-1) and a conductivity of 11.6 S m~(-1). The application of the composite paper as a flexible double layer supercapacitor in an organic electrolyte (LiPF6) displays a high capacity of 252 F g~(-1) at a current density of 1 A g~(-1) with respect to GNS. Moreover, the paper can be used as the anode in a lithium battery, showing distinct charge and discharge performances. The simple process for synthesising the GNS functionalized cellulose papers is attractive for the development of high performance papers for electrical, electrochemical and multifunctional applications.
机译:通过简单的造纸工艺制造了石墨烯纳米片(GNS)涂层纤维素纤维的电导和电化学活性复合纸,以将化学合成的GN分散到纤维素纸浆中,然后浸润。在浸润过程中,将GNS纳米片沉积在纤维素纤维上,形成涂层。它通过小型GNS载荷(3.2 wt%)的互连纤维素纤维的桥形成连续的网络。 GNS/纤维素纸与纯纤维素纸一样灵活且机械硬。电气测量结果显示,复合纸的电阻为1063Ω□〜(-1),电导率为11.6 S M〜(-1)。在有机电解质(LIPF6)中,将复合纸作为柔性双层超级电容器的应用显示,相对于GNS,电流密度为1 A g〜(-1)的高容量为252 f g〜(-1)。此外,该纸可以用作锂电池中的阳极,显示出明显的电荷和放电性能。合成GNS功能化纤维素纸的简单过程对于开发用于电气,电化学和多功能应用的高性能论文具有吸引力。

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