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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Versatile Grafting Approaches to Functionalizing Individually Dispersed Graphene Nanosheets Using RAFT Polymerization and Click Chemistry
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Versatile Grafting Approaches to Functionalizing Individually Dispersed Graphene Nanosheets Using RAFT Polymerization and Click Chemistry

机译:使用RAFT聚合和Click化学方法对单个分散的石墨烯纳米片进行功能化的通用接枝方法

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Developing powerful and reliable strategies to covalently function-alize graphene for efficient grafting and achieving precise interface control remains challenging due to the strong interlayer cohesive energy and the surface inertia of graphene. Here, we present versatile and efficient grafting strategies to functionalize graphene nanosheets. An alkyne-bearing graphene core was used to prepare polymer-functionalized graphene using 'grafting to' and 'grafting from' strategies in combination with reversible chain transfer and click chemistry. The use of the 'grafting to' approach allows full control over limited length grafted polymer chains, while permitting a high grafting density to a single graphene face, resulting in good solubility and processability. The 'grafting from' approach offers complementary advantages, such as the grafting of high molecular weight polymer chains and a better coverage ratio on the graphene surface; however, the extra steps introduced, the presence of initiating groups, and difficulty in controlling the grafted polymer lead to decreased processability. Various types of polymer chains have been successful covalently tethered to graphene nanosheets using these two approaches, producing various molecular brushes with multifunctional arms resulting in water-soluble, oil-soluble, acidic, basic, polar, apolar, and variously functionalized polymers. This work describes versatile methodologies, using the 'grafting to' and 'grafting from' approaches, for the preparation of individually dispersed graphene nanosheets having the desirable properties described.
机译:由于强大的层间内聚能和石墨烯的表面惯性,开发有效且可靠的策略以共价作用石墨烯以进行有效接枝并实现精确的界面控制仍然具有挑战性。在这里,我们提出了通用而有效的接枝策略,以功能化石墨烯纳米片。带有炔烃的石墨烯核用于制备聚合物功能化的石墨烯,方法是采用“接枝”和“从……接枝”策略,并结合可逆链转移和点击化学。使用“接枝到”方法可以完全控制有限长度的接枝聚合物链,同时允许对单个石墨烯面的高接枝密度,从而具有良好的溶解性和可加工性。 “接枝”方法具有互补的优势,例如高分子量聚合物链的接枝和在石墨烯表面的覆盖率更高;然而,引入的额外步骤,引发基团的存在以及难以控制接枝聚合物导致可加工性降低。使用这两种方法,已成功将各种类型的聚合物链共价连接到石墨烯纳米片上,从而生产出具有多功能臂的各种分子刷,从而形成了水溶性,油溶性,酸性,碱性,极性,非极性和各种功能化的聚合物。这项工作描述了使用“接枝到”和“接枝自”方法的通用方法,用于制备具有所述所需性能的单独分散的石墨烯纳米片。

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