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The dispersion and aggregation of graphene oxide in aqueous media

机译:氧化石墨烯的分散和聚合在水媒体

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摘要

Graphene oxide (GO), as a typical two-dimensional material, possesses a range of oxygen-containing groups and shows surfactant and/or polyelectrolyte-like characteristics. Herein, GO sheets with narrow size distribution were prepared by an ultracentrifugation-based process and the aggregation behaviour of GO in pure water and an electrolyte aqueous solution were studied using laser light scattering (LLS). When adding common electrolytes, such as NaCl and MgCl2, into the GO dispersions, aggregation occurs and irreversible coagulation eventually occurs too. However, the GO dispersion can still remain stable when adding excess AlCl3. The zeta potential of the GO dispersion changes from negative to positive after the addition of access AlCl3, indicating that electrostatic repulsion is still responsible for the dispersion of GO, which is in good agreement with the LLS results. This finding on the dispersion of GO may be applied in the solution processing of GO. It also expands the scope of the design and preparation of new GO-based hybrid materials with different functions.
机译:石墨烯氧化物(去),作为一个典型的二维材料,拥有一系列含氧组织和显示表面活性剂和/或polyelectrolyte-like特征。表与狭窄的粒径分布由一个ultracentrifugation-based过程和在纯水的聚合行为和电解质溶液进行了研究利用激光光散射(那样)。常见的电解质,如氯化钠和MgCl2,乳液,聚合发生不可逆转的凝固最终发生。然而,色散可以仍然存在当添加多余的三氯化铝稳定。潜在的色散变化后消极到积极的访问三氯化铝,表明静电斥力仍负责分散走,在良好的协议与接拍的结果。寻找分散的可能应用的解决方案处理。新设计和准备的范围GO-based混合材料不同功能。

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