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Highly Intact and Pure Oxo-Functionalized Graphene: Synthesis and Electron-Beam-Induced Reduction

机译:高度完整和纯的氧代官能化石墨烯:合成和电子束诱导的还原

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摘要

Controlling the chemistry of graphene is necessary to enable applications in materials and life sciences. Research beyond graphene oxide is targeted to avoid the highly defective character of the carbon framework. Herein, we show how to optimize the synthesis of oxo-functionalized graphene (oxo-G) to prepare high-quality monolayer flakes that even allow for direct transmission electron microscopy investigation at atomic resolution (HRTEM). The role of undesired residuals is addressed and sources are eliminated. HRTEM provides clear evidence for the exceptional integrity of the carbon framework of such oxo-G sheets. The patchy distribution of oxo-functionality on the nm-scale, observed on our highly clean oxo-G sheets, corroborates theoretical predictions. Moreover, defined electron-beam irradiation facilitates gentle de-functionalization of oxo-G sheets, a new route towards clean graphene, which is a breakthrough for localized graphene chemistry.
机译:控制石墨烯的化学是必要的,以使材料和生命科学的应用。 超越石墨烯氧化物的研究是靶向避免碳框架的高度缺陷的特征。 在此,我们展示了如何优化氧代官能化石墨烯(OXO-G)的合成,以制备高质量的单层薄片,即甚至允许以原子分辨率(HRTEM)的直接透射电子显微镜调查进行直接透射电子显微镜调查。 不需要的残差的作用是解决的,并消除了来源。 HRTEM提供了明确的证据,以便出于这种Oxo-G板的碳框架的特殊完整性。 在我们高度清洁的Oxo-G板上,臭氧功能对NM级的斑点分布,对理论预测进行了证实。 此外,定义的电子束照射有助于氧气-G片的温和透明官能化,朝向清洁石墨烯的新途径,这是局部石墨烯化学的突破。

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