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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Nanocellulose-graphene composites: A promising nanomaterial for flexible supercapacitors
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Nanocellulose-graphene composites: A promising nanomaterial for flexible supercapacitors

机译:纳米纤维素 - 石墨烯复合材料:柔性超级电容器的有希望的纳米材料

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摘要

With the increasing consumption of global fossil energy and environmental pollution, the development of green renewable energy and efficient energy storage technology become an urgent problem to solve. Supercapacitors have drawn a great interest for use in wearable electronic devices due to their portability and stable performance. The electrode is very important when preparing a high-performance flexible supercapacitor, which requires good electrochemical performance and flexibility. Graphene and nanocellulose are excellent flexible electrode material for supercapacitors, and nanocellulose is often used as a substrate material for electronic devices because of its good biodegradability, mechanical flexibility and chemical reactivity. In this work, the structure design and assembly method of the nanocellulose-graphene composite materials used for flexible supercapacitors are reviewed. The mechanical flexibility, specific capacitance, electrochemical performance, cyclic stability, renewability and biodegradability are taken into account, so as to evaluate the performance of the composite materials and to better assess the merits of this material with respect to real applications.
机译:随着全球化石能源和环境污染的越来越大,绿色可再生能源和高效的能量存储技术的发展成为一个迫切解决的问题。由于其可移植性和稳定的性能,超级电容器对可穿戴电子设备使用的很兴趣。当准备高性能柔性超级电容器时,电极非常重要,这需要良好的电化学性能和柔韧性。石墨烯和纳米纤维素是用于超级电容器的优异的柔性电极材料,并且由于其良好的生物降解性,机械灵活性和化学反应性,纳米纤维素通常用作电子器件的基材材料。在这项工作中,综述了用于柔性超级电容器的纳米纤维素 - 石墨烯复合材料的结构设计和组装方法。考虑机械柔韧性,特定电容,电化学性能,循环稳定性,可再生性和生物降解性,以评估复合材料的性能,并更好地评估该材料的优点。

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