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Photo-induced copper-mediated (meth)acrylate polymerization towards graphene oxide and reduced graphene oxide modification

机译:光诱导的铜介导的(甲基)丙烯酸酯聚合为石墨烯氧化物和降低的石墨烯氧化物改性

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摘要

The preparation of well-dispersed graphene/polymer nanocomposites is challenging due to the poor miscibility of graphene sheets in a polymer matrix. To enhance the interaction between both phases, graphene sheets can be decorated with polymer chains. Herein, different strategies to graft poly(methyl methacrylate) (PMMA) and poly(di(ethylene glycol) ethyl ether acrylate) (PDEGA) chains at various positions on graphene oxide and reduced graphene oxide (GO/rGO) sheets are compared. Chain attachment was achieved by "grafting-to" and "grafting-from" methods. Grafting-to was performed by classical copper (I)-catalyzed alkyne azide cycloaddition. Using a grafting-from approach, PMMA and PDEGA brushes were grown from GO and rGO sheets via surface-initiated photo-induced copper-mediated polymerization (SI-photoCMP). SI-photoCMP is a robust and efficient method that allows polymerizations to be carried out under mild conditions and with reduced catalyst concentration. Moreover, the successful implementation of SI-photoCMP in a continuous-flow set-up enables easy upscaling of the system and is, therefore, a more efficient and environmentally friendly process for GO/rGO surface modification. By using the grafting-to approach, the grafting density of PMMA (M-n = 2,600 g/mol) was one chain per 990 carbons of graphene. In contrast, longer PMMA chains (M-n = 40,300 g/mol) and higher grafting density were obtained via the grafting-from method (one PMMA chain per 140 carbons of graphene).
机译:井分散的石墨烯/聚合物纳米复合材料的制备是由于聚合物基质中石墨烯片的差质不良而挑战。为了增强两个相之间的相互作用,石墨烯片可以用聚合物链装饰。在此,比较了与石墨烯氧化物和还原石墨烯(GO / RGO)片材上的各种位置的接枝聚(甲基丙烯酸甲酯)(PMMA)和聚(DI(乙二醇)乙醚丙烯酸酯)(PDEGA)链的不同策略。通过“接收到”和“嫁接 - 从”方法实现链附着。通过古典铜(i)进行嫁接 - 催化炔丙酮叠芳烃环加成。使用从接种方法,PMMA和PDEGA刷通过表面引发的光诱导的铜介导的聚合(Si-Photocmp)从Go和Rgo纸张生长。 Si-Photocmp是一种稳健而有效的方法,允许在温和条件下进行聚合和催化剂浓度降低。此外,在连续流动设置中的Si-Photocmp的成功实施能够易于对系统的升级,因此,对于GO / RGO表面改性更有效和环保的过程。通过使用接枝到方法,PMMA的移植密度(M-N = 2,600g / mol)是每990碳的石墨烯的一个链。相反,通过接枝法得到较长的PMMA链(M-N = 40,300g / mol)和更高的接枝密度(每140个石墨烯的140碳的PMMA链)获得。

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  • 来源
    《European Polymer Journal》 |2020年第1期|共11页
  • 作者单位

    UHasselt Inst Mat Res Polymer React Design Grp Agoralaan B-3590 Diepenbeek Belgium;

    Monash Univ Sch Chem 19 Rainforest Walk Clayton Vic 3800 Australia;

    UHasselt Inst Mat Res Polymer React Design Grp Agoralaan B-3590 Diepenbeek Belgium;

    UHasselt Inst Mat Res Inorgan &

    Phys Chem Agoralaan B-3590 Diepenbeek Belgium;

    Karlsruhe Inst Technol KIT Inst Appl Mat IAM Hermann von Helmholtz Pl 1 D-76344 Eggenstein Leopoldshafen Germany;

    Karlsruhe Inst Technol KIT Karlsruhe Nano Micro Facil KNMF Hermann von Helmholtz Pl 1 D-76344 Eggenstein Leopoldshafen Germany;

    IMEC Vzw Div IMOMEC Wetenschapspk 1 B-3590 Diepenbeek Belgium;

    UHasselt Inst Mat Res Inorgan &

    Phys Chem Agoralaan B-3590 Diepenbeek Belgium;

    UHasselt Inst Mat Res Inorgan &

    Phys Chem Agoralaan B-3590 Diepenbeek Belgium;

    IMEC Vzw Div IMOMEC Wetenschapspk 1 B-3590 Diepenbeek Belgium;

    UHasselt Inst Mat Res Polymer React Design Grp Agoralaan B-3590 Diepenbeek Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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