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STABILIZATION OF GRAPHENE DISPERSIONS BY CELLULOSE NANOCRYSTALS COLLOIDS

机译:纤维素纳米胶体对石墨烯分散的稳定作用

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The outstanding properties of single-layer graphene sheets for energy storage are hindered as agglomeration or restacking leads to the formation of graphite. The implications of the aforementioned arise on the difficulties associated with the aqueous processing of graphene sheets: from large-scale production to its utilization in solvent-assisted techniques like spin coating or layer-by-layer deposition. To overcome this, aqueous dispersions of graphene were stabilized by cellulose nanocrystals colloids. Aqueous cellulose nanocrystals dispersion highlights as a low-cost and environmentally friendly stabilizer towards graphene large-scale processing. Colloids of cellulose nanocrystals are formed by electrostatic repulsion of fibrils due to de-protonated carboxyl or sulfate half-ester functional groups. Graphene dispersions are obtained by hydrothermal reduction of electrochemically exfoliated graphene oxide in the presence of cellulose nanocrystals. This approach allows the preservation of the intrinsic properties of the nano-sheets by promoting non-covalent interactions between cellulose and graphene. The dispersions could be cast to form free-standing flexible conducting films or freeze-dried to form foams and aerogels for capacitive energy storage.
机译:由于聚结或重新堆积导致形成石墨,阻碍了用于储能的单层石墨烯片材的优异性能。前述含义的产生涉及与石墨烯片的水性加工相关的困难:从大规模生产到其在溶剂辅助技术如旋涂或逐层沉积中的利用。为了克服这个问题,通过纤维素纳米晶体胶体稳定了石墨烯的水分散体。纤维素纳米晶体水分散体作为石墨烯大规模加工的低成本和环境友好的稳定剂而突出。纤维素纳米晶体的胶体是由于去质子化的羧基或硫酸盐半酯官能团而通过原纤维的静电排斥而形成的。在纤维素纳米晶体的存在下,通过水热还原电化学剥离的氧化石墨烯获得石墨烯分散体。该方法允许通过促进纤维素和石墨烯之间的非共价相互作用来保留纳米片的固有特性。可以将分散体浇铸以形成独立的柔性导电膜,或者将其冷冻干燥以形成用于电容性能量存储的泡沫和气凝胶。

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