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Investigating the surface state of graphene quantum dots

机译:研究石墨烯的表面状态量子点

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A universal route to GQDs is developed based on "solution phase-based scissor" methods. The PL centers of the GQDs are systematically studied and are proved to be the surface state. This is related to the hybridization structure of the edge groups and the connected partial graphene core. Through experiment and analysis, we have preliminarily proved that the efficient edge groups for green emission are mainly carboxyl, carbonyl and amide. This is indicated by the following three factors: firstly, the PL of GQDs is enhanced by UV exposure, during which partial -OH groups are converted into carboxyl groups; secondly, the PL properties of GQDs can be further improved by one-step solvothermal treatment, in which partial carboxyl groups are converted to amide groups and the surface state of the GQDs is enhanced; thirdly, reduced m-GQDs possess more -OH groups compared with reduced GQDs, resulting in more blue PL centers (the carboxyl, carbonyl and amide-based green centers are converted to -OH-based blue centers). The present work highlights a very important direction for the understanding of the PL mechanism of GQDs and other related carbon-based materials.
机译:一个普遍的路线GQDs开发基于“解决方案”分阶段剪刀的方法。中心GQDs的系统研究而被证明是表面状态。的杂交结构有关边缘群体和连接部分石墨烯核心。初步证明了有效的边缘组织绿色排放主要是羧基,羰基和酰胺。以下三个因素:首先,GQDs的PL被紫外线照射增强,在哪个部分-哦组转化为羧基组;其次,GQDs PL的特性进一步提高了一步solvothermal治疗,部分羧基组转化为酰胺组和表面状态GQDs增强;拥有更多的-哦组相比,减少了GQDs,导致更多的蓝色(PL中心羧基、羰基和amide-based绿色中心转换为-OH-based蓝色中心)。现在强调了一个非常重要的工作PL的理解方向GQDs和其他相关机制以碳为基础材料。

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