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Photochemical reaction on graphene surfaces controlled by substrate-surface modification with polar self-assembled monolayers

机译:由底物表面改性和极性自组装单层控制的石墨烯表面的光化学反应

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摘要

The unique thinness of two-dimensional materials enables control over chemical phenomena at their surfaces by means of various gating techniques. For example, gating methods based on field-effect-transistor configurations have been achieved. Here, we report a molecular gating approach that employs a local electric field generated by a polar self-assembled monolayer formed on a supporting substrate. By performing Raman scattering spectroscopy analyses with a proper data correction procedure, we found that molecular gating is effective for controlling solid phase photochemical reactions of graphene with benzoyl peroxide. Molecular gating offers a simple method to control chemical reactions on the surfaces of two-dimensional materials because it requires neither the fabrication of a transistor structure nor the application of an external voltage.
机译:二维材料的独特薄度能够通过各种门控技术控制其表面的化学现象。 例如,已经实现了基于场效应晶体管配置的门控方法。 这里,我们报告了一种分子门控方法,其采用由形成在支撑基板上的极性自组装单层产生的局部电场。 通过使用适当的数据校正程序进行拉曼散射光谱分析,我们发现分子门控是控制石墨烯与过氧化苯甲酰的固相光化学反应有效。 分子门控提供一种简单的方法来控制在二维材料的表面上的化学反应,因为它既不需要制造晶体管结构也不需要施加外部电压。

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