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An effective non-covalent grafting approach to functionalize individually dispersed reduced graphene oxide sheets with high grafting density, solubility and electrical conductivity

机译:一种有效的非共价接枝的方法使职能化单独分散降低氧化石墨烯表高接枝密度,溶解性和导电性

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摘要

Polymer-functionalized reduced graphene oxide (polymer-FG), produced as individually dispersed graphene sheets, offers new possibilities for the production of nanomaterials that are useful for a broad range of potential applications. Although non-covalent functionalization has produced graphene with good dispersibility and a relatively complete conjugated network, there are few reports related to the effective functionalization of reduced graphene oxide (RGO) using a simple, general method. Herein, we report a facile and effective approach for the preparation of polymer-FG from a non-covalently functionalized pyrene-terminal polymer in benzoyl alcohol (BnOH). This aromatic alcohol (BnOH) was used as the liquid medium for the dispersion of graphene oxide (GO) with a pyrene-terminal polymer, and as an effective reductant; this makes the synthesis procedure convenient and the production of polymer-FG easily scalable because the conversion of GO to RGO and the non-covalent functionalization proceed simultaneously. The resulting polymer-FG sheets show organo-dispersibility, high electrical conductivity and good processability, and have a similar grafting density comparable to covalently made materials, thus making them promising candidates for applications such as electrochemical devices, nanomaterials and polymer nanocomposites. Hence, this work provides a general methodology for preparing individually dispersed graphene sheets with desirable properties.
机译:Polymer-functionalized降低石墨烯氧化物(polymer-FG)作为单独分散生产石墨烯薄片,提供了新的可能性生产的纳米材料是有用的广泛的潜在应用。非共价功能化已经产生了石墨烯具有良好的可分散性和相对完整的共轭网络相关的一些报告有效功能化石墨烯氧化物减少(RGO)使用一个简单的,通用的方法。一个简单和有效的方法从非共价polymer-FG的准备功能化苯甲酰pyrene-terminal聚合物酒精(BnOH)。用作液体介质的色散石墨烯氧化物pyrene-terminal(去)聚合物,是一种有效的还原剂;使合成过程方便生产polymer-FG容易可伸缩的因为去RGO和非共价的转换功能化同时进行。结果polymer-FG表显示organo-dispersibility、高电电导率和良好的加工性能,有一个类似与共价接枝密度材料,从而使他们有前途候选人等应用程序电化学设备、纳米材料和聚合物纳米复合材料。一个通用方法单独准备分散石墨烯和可取的属性。

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