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Transient nature of graphene quantum dot formation via a hydrothermal reaction

机译:通过水热反应形成石墨烯量子点的瞬态性质

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A facile, economic and environmentally friendly one-step approach for the preparation of highly luminescent graphene quantum dots (GQDs) was developed using a hydrothermal reaction between citric acid and urea. Unlike previous reports, we focused on the effect of the transient nature of GQD formation on the photoluminescence (PL) properties and molecular structure changes of the products. We found that the GQDs have an optimum reaction time and require an effective precursor to achieve excellent luminescent properties. The PL, ultraviolet-visible (UV-vis) absorption, zeta potential, and nuclear magnetic resonance (NMR) analyses of the GQDs prepared at various reaction times revealed that the molecular structures responsible for the luminescence of the GQDs are aggregates or condensation products of citric acid amides. We found that urea addition to the precursor drastically enhances the PL intensity of the GQDs, and it is 40 times higher than those prepared using the pure citric acid precursor. Additionally, a GQDs-polyvinyl alcohol composite achieved an excellent quantum yield (QY) of 43.6%.
机译:利用柠檬酸和尿素之间的水热反应,开发了一种简便,经济和环保的一步法制备高发光石墨烯量子点(GQD)。与以前的报告不同,我们重点研究GQD形成的瞬态性质对产品的光致发光(PL)特性和分子结构变化的影响。我们发现,GQD具有最佳的反应时间,并且需要有效的前体才能实现出色的发光性能。在不同反应时间制备的GQD的PL,紫外可见(UV-vis)吸收,ζ电位和核磁共振(NMR)分析表明,负责GQD发光的分子结构是GQD的聚集体或缩合产物。柠檬酸酰胺。我们发现,将尿素添加到前体中会大大提高GQD的PL强度,它比使用纯柠檬酸前体制备的尿素高40倍。另外,GQDs-聚乙烯醇复合材料实现了43.6%的出色量子产率(QY)。

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