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Substrate-Modulated Reductive Graphene Functionalization

机译:基质调节的还原石墨烯功能化

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摘要

Covalently functionalizing mechanical exfoliated mono- and bilayer graphenides with lambda-iodanes led to the discovery that the monolayers supported on a SiO2 substrate are considerably more reactive than bilayers as demonstrated by statistical Raman spectroscopy/microscopy. Supported by DFT calculations we show that ditopic addend binding leads to much more stable products than the corresponding monotopic reactions as a result of the much lower lattice strain of the reactions products. The chemical nature of the substrate (graphene versus SiO2) plays a crucial role.
机译:机械剥落的单层和双层石墨烯与λ碘共价官能化导致发现,如统计拉曼光谱/显微镜所证实的,负载在SiO2基材上的单层比双层具有更高的反应性。在DFT计算的支持下,我们表明,由于反应产物的晶格应变低得多,因此与相应的单位反应相比,对位加成键的结合产生的产物要稳定得多。基材的化学性质(石墨烯与SiO2)起着至关重要的作用。

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