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纤维素基底上剥离和再组装石墨的多功能涂层。

Multifunctional coatings of exfoliated and reassembled graphite on cellulosic substrates.

机构信息

Institute of Chemistry, University of Campinas, Campinas, 13083-970, SP, Brazil.

出版信息

Faraday Discuss. 2021 Apr 1;227:105-124. doi: 10.1039/c9fd00109c. Epub 2020 Dec 10.

Abstract

Exfoliated and reassembled graphite (ERG) forms macroscopic, high aspect ratio (1 : >10) and highly conductive coating layers that are strongly adherent to paper, wood, cloth, ceramic and other substrates. The coating precursor is an aqueous dispersion of graphite that exfoliates spontaneously in alkaline cellulose solutions, forming stable dispersions. These can be applied to the substrates by using different painting, coating and lithography techniques. The coating morphology changes from highly smooth to porous and rough, depending on the finishing procedure used. Coated paper sheets are flexible and they perform as leads in electrical circuitry and as electrodes in electrodeposition, supercapacitors, hygroelectricity cells and other electrochemical devices suitable for flexible and wearable electronics. These unique properties of ERG are explained as a consequence of the amphiphilic character of cellulose, which allows it to play the roles of exfoliant, dispersant, stabilizer, adhesive and plasticizer, while graphite powder is transformed into a cohesive laminated nanocomposite.

摘要

剥离和重组石墨(ERG)形成宏观、高纵横比(1∶>10)和高导电性的涂层,这些涂层强烈地附着在纸张、木材、布料、陶瓷和其他基底上。涂层前体是石墨的水性分散体,在碱性纤维素溶液中自发剥离,形成稳定的分散体。这些可以通过使用不同的绘画、涂层和光刻技术应用于基底。涂层形态从高度光滑变为多孔和粗糙,具体取决于所使用的整理工艺。涂覆的纸张柔软,它们在电路中充当引线,在电沉积、超级电容器、湿敏性电池和其他适合柔性和可穿戴电子产品的电化学装置中充当电极。这些 ERG 的独特性质可以解释为纤维素的双亲性质的结果,纤维素允许其充当剥离剂、分散剂、稳定剂、粘合剂和增塑剂,而石墨粉末则转化为具有内聚力的层状纳米复合材料。

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