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Unifying Principles of the Reductive Covalent Graphene Functionalization

机译:还原共价石墨烯官能化的统一原理

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摘要

Covalently functionalized graphene derivatives were synthesized via benchmark reductive routes using graphite intercalation compounds (GICs), in particular KC_8. We have compared the graphene arylation and alkylation of the GIC using 4-iert-butylphenyldiazonium and bis(4-(ferf-butyl)phenyl)iodonium salts, as well as phenyl iodide, n-hexyl iodide, and n-dodecyl iodide, as electrophiles in model reactions. We have put a particular focus on the evaluation of the degree of addition and the bulk functionalization homogeneity (H_(bulk)). For this purpose, we have employed statistical Raman spectroscopy (SRS), and a forefront characterization tool using thermogravimetric analysis coupled with FT-IR, gas chromatography, and mass spectrometry (TGA/FT-IR/GC/MS). The present study unambiguously shows that the graphene functionalization using alkyl iodides leads to the best results, in terms of both the degree of addition and the H_(bu)k). Moreover, we have identified the reversible character of the covalent addition chemistry, even at temperatures below 200 °C. The thermally induced addend cleavage proceeds homolytically, which allows for the detection of dimeric cleavage products by TGA/FT-IR/GC/MS. This dimerization points to a certain degree of regioselectivity, leading to a low sheet homogeneity (H_(sheet)). Finally, we developed this concept by performing the reductive alkylation reaction in monolayer CVD graphene films. This work provides important insights into the understanding of basic principles of reductive graphene functionalization and will serve as a guide in the design of new graphene functionalization concepts.
机译:共价官能化的石墨烯衍生物是使用石墨插层化合物(GIC),尤其是KC_8,通过基准还原路线合成的。我们比较了使用4-叔丁基苯基重氮盐和双(4-(叔丁基)苯基)碘鎓盐以及苯基碘化物,正己基碘化物和正十二烷基碘化物作为GIC的石墨烯芳基化和烷基化模型反应中的亲电试剂。我们特别关注添加程度和本体功能化均匀性(H_(bulk))的评估。为此,我们采用了统计拉曼光谱(SRS),以及使用热重分析与FT-IR,气相色谱和质谱(TGA / FT-IR / GC / MS)相结合的最前沿的表征工具。本研究清楚地表明,就添加度和H_(bu)k而言,使用烷基碘的石墨烯官能化可产生最佳结果。此外,即使在低于200°C的温度下,我们也已经确定了共价加成化学的可逆特性。热诱导的加合物裂解均质地进行,这允许通过TGA / FT-IR / GC / MS检测二聚体裂解产物。该二聚化指示一定程度的区域选择性,从而导致低的纸张均质性(H_(sheet))。最后,我们通过在单层CVD石墨烯薄膜中进行还原性烷基化反应发展了这一概念。这项工作为理解还原性石墨烯功能化的基本原理提供了重要的见识,并将作为设计新的石墨烯功能化概念的指南。

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  • 来源
    《Journal of the American Chemical Society》 |2017年第14期|5175-5182|共8页
  • 作者单位

    Department of Chemistry and Pharmacy, Friedrich-Alexander University of Erlangen-Niirnberg, Institute of Organic Chemistry, Henkestrasse 42, 91054 Erlangen, Germany,Joint Institute of Advanced Materials and Processes (ZMP), Friedrich-Alexander University of Erlangen-Niirnberg, Dr.-Mack Strasse 81, 90762 Fürth, Germany;

    Department of Chemistry and Pharmacy, Friedrich-Alexander University of Erlangen-Niirnberg, Institute of Organic Chemistry, Henkestrasse 42, 91054 Erlangen, Germany,Joint Institute of Advanced Materials and Processes (ZMP), Friedrich-Alexander University of Erlangen-Niirnberg, Dr.-Mack Strasse 81, 90762 Fürth, Germany;

    Department of Chemistry and Pharmacy, Friedrich-Alexander University of Erlangen-Niirnberg, Institute of Organic Chemistry, Henkestrasse 42, 91054 Erlangen, Germany,Joint Institute of Advanced Materials and Processes (ZMP), Friedrich-Alexander University of Erlangen-Niirnberg, Dr.-Mack Strasse 81, 90762 Fürth, Germany;

    Department of Chemistry and Pharmacy, Friedrich-Alexander University of Erlangen-Niirnberg, Institute of Organic Chemistry, Henkestrasse 42, 91054 Erlangen, Germany,Joint Institute of Advanced Materials and Processes (ZMP), Friedrich-Alexander University of Erlangen-Niirnberg, Dr.-Mack Strasse 81, 90762 Fürth, Germany;

    Faculty of Physics, University of Vienna, Strudlhofgasse 4, A-1090 Vienna, Austria;

    Faculty of Physics, University of Vienna, Strudlhofgasse 4, A-1090 Vienna, Austria;

    Department of Chemistry and Pharmacy, Friedrich-Alexander University of Erlangen-Niirnberg, Institute of Organic Chemistry, Henkestrasse 42, 91054 Erlangen, Germany,Joint Institute of Advanced Materials and Processes (ZMP), Friedrich-Alexander University of Erlangen-Niirnberg, Dr.-Mack Strasse 81, 90762 Fürth, Germany;

    Department of Chemistry and Pharmacy, Friedrich-Alexander University of Erlangen-Niirnberg, Institute of Organic Chemistry, Henkestrasse 42, 91054 Erlangen, Germany,Joint Institute of Advanced Materials and Processes (ZMP), Friedrich-Alexander University of Erlangen-Niirnberg, Dr.-Mack Strasse 81, 90762 Fürth, Germany;

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  • 入库时间 2022-08-18 03:07:55

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