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Functionalization of graphene oxide for the production of novel graphene-based polymeric and colloidal materials

机译:氧化石墨烯的功能化,用于生产新型石墨烯基聚合物和胶体材料

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Graphene oxide (GO) has been long-considered the most convenient route towards the large scale production of graphene. Additionally, the functional groups present within GO permit both covalent and non-covalent chemical functionalization, in particular with polymeric materials. The functionalization of GO therefore enables the development of graphene-based composite materials which possess the properties of both the matrix and the remarkable electrical, thermal and mechanical properties of both GO and graphene. In this review, we discuss the functionalization of GO in two broad settings: macromolecular functionalization of GO, and the use of GO in dispersed/colloidal systems. We review numerous methods for the functionalization of GO with initiators or chain transfer agents to permit controlled/living radical polymerization (CLRP) to take place from the surface of GO; the use of GO as a polymerization initiator, as well as non-covalent polymeric modification is discussed. For applications of GO in dispersed systems, we discuss the incorporation of GO into miniemulsions, emulsions and other dispersed phase polymerization systems, as well as techniques such as layer-by-layer assembly and colloidal templating. The use of GO as a 'colloidal surfactant' is also reviewed. These functionalization methods are discussed within the framework of creating materials with enhanced properties for specific applications including electrodes, capsules, polymer particles and composite films.
机译:氧化石墨烯(GO)一直被认为是实现大规模生产石墨烯的最便捷途径。另外,GO中存在的官能团允许共价和非共价化学官能化,特别是利用聚合材料。因此,GO的功能化可以开发出具有石墨烯基复合材料的材料,该材料既具有基体的特性,又具有GO和石墨烯的出色电,热和机械性能。在这篇综述中,我们讨论了在两种广泛的情况下GO的功能化:GO的大分子功能化以及GO在分散/胶体系统中的使用。我们回顾了许多用引发剂或链转移剂将GO功能化的方法,以使受控/活性自由基聚合(CLRP)从GO表面发生。讨论了使用GO作为聚合引发剂以及非共价聚合改性。对于GO在分散体系中的应用,我们讨论了将GO掺入微乳液,乳液和其他分散相聚合体系中的方法,以及诸如逐层组装和胶体模板化等技术。还综述了GO作为“胶体表面活性剂”的用途。这些功能化方法将在为特定应用创建具有增强性能的材料的框架内进行讨论,包括电极,胶囊,聚合物颗粒和复合膜。

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