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Protection of Molecular Microcrystals by Encapsulationunder Single-Layer Graphene

机译:通过封装保护分子微晶在单层石墨烯下

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摘要

Microcrystals composed of the conjugated organic molecule perylene can be encapsulated beneath single-layer graphene using mild conditions. Scanning electron and atomic force microscopy images show that the graphene exists as a conformal coating on top of the crystal. Raman spectroscopy indicates that the graphene is only slightly perturbed by the underlying crystal, probably due to strain. The graphene layer provides complete protection from a variety of solvents and prevents sublimation of the crystal at elevated temperatures. Time-resolved photoluminescence measurements do not detect any quenching of the perylene emission by the graphene layer, although nonradiative energy transfer within a few nanometers of the crystal–graphene interface cannot be ruled out. The ability to encapsulate samples on a substrate under a graphene monolayer may provide a new way to access and interact with the organic crystal under ambient conditions.
机译:可以在温和条件下将由共轭有机分子per构成的微晶封装在单层石墨烯下。扫描电子和原子力显微镜图像显示,石墨烯作为共形涂层存在于晶体顶部。拉曼光谱表明,石墨烯仅受下层晶体的轻微干扰,可能是由于应变。石墨烯层提供了对各种溶剂的完全保护,并防止了高温下晶体的升华。尽管不能排除晶体-石墨烯界面几纳米范围内的非辐射能量转移,但时间分辨的光致发光测量并未检测到石墨烯层对per的任何猝灭。在石墨烯单层下将样品封装在基板上的能力可以提供一种在环境条件下接触有机晶体并与之相互作用的新方法。

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