首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Facile synthesis of bacterial cellulose fibres covalently intercalated with graphene oxide by one-step cross-linking for robust supercapacitors
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Facile synthesis of bacterial cellulose fibres covalently intercalated with graphene oxide by one-step cross-linking for robust supercapacitors

机译:通过一步交联轻松合成与氧化石墨烯共价插入的细菌纤维素纤维,可制成坚固的超级电容器

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摘要

Electrode materials with a three-dimensional network structure and high conductivity are crucial for the development of robust high-performance supercapacitors. We report the development of a facile method for the covalent intercalation of graphene oxide (GO) with bacterial cellulose (BC) fibres via a one-step esterification to construct a three-dimensional cross-linked structural scaffold. The as-prepared composite had a tensile strength of 18.48 MPa and an elongation at breakage of 24%. With an outstanding electrical conductivity of 171 S m(-1), the composite electrode demonstrates a good mass-specific capacitance of 160 F g(-1) at a current density of 0.4 A g(-1). A robust supercapacitor was demonstrated with an outstanding capacitance retention of 90.3% over 2000 recycles. The impressive mechanical and electrochemical properties of this covalently intercalated BC/GO composite may open new avenues in developing cross-linked GO nanocomposites for stretchable electronics.
机译:具有三维网络结构和高导电性的电极材料对于开发强大的高性能超级电容器至关重要。我们报告开发的一种简便的方法,通过一步酯化以构建三维交联结构支架,与细菌纤维素(BC)纤维共价嵌入氧化石墨烯(GO)与细菌纤维素(BC)。所制备的复合材料具有18.48MPa的拉伸强度和24%的断裂伸长率。复合电极具有171 S m(-1)的出色电导率,在电流密度为0.4 A g(-1)时显示出160 F g(-1)的良好的质量比电容。事实证明,这种坚固的超级电容器在2000次循环中具有90.3%的出色电容保持率。这种共价插入的BC / GO复合材料令人印象深刻的机械和电化学性能可能为开发可拉伸电子学的交联GO纳米复合材料开辟新途径。

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