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Simple preparation of graphene quantum dots with controllable surface states from graphite

机译:石墨烯量子点简单地制备具有可控表面状态的石墨

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Graphite is economic and earth-abundant carbon precursor for preparing graphene quantum dots (GQDs). Here, we report a facile and green approach to produce GQDs from graphite flakes via a pulsed laser ablation (PLA) method assisted by high-power sonication. A homogeneous dispersion of graphite flakes, caused by high-power sonication during PLA, leads to the formation of GQDs following a laser fragmentation in liquid (LFL) rather than laser ablation in liquid (LAL) mechanism. The final product of GQDs exhibits the distinct structural, chemical, and optical properties of pristine graphene itself. However, graphene oxide quantum dots (GOQDs) with abundant surface oxygen-rich functional groups are readily formed from graphite flakes when high-power sonication is not employed during the PLA process. GQDs and GOQDs show a significantly different luminescence nature. Hence, selective production of either functional GQDs or GOQDs can be achieved by simply turning the high-power sonication during the PLA process on and off. We believe that our modified PLA process proposed in this work will further open up facile and simple routes for designing functional carbon materials.
机译:石墨是制备石墨烯量子点(GQDS)的经济和土壤 - 丰富的碳前体。在这里,我们通过高功率超声辅助的脉冲激光烧蚀(PLA)方法报告了一种容易和绿色的方法来从石墨薄片生产GQDS。由PLA期间高功率超声引起的石墨薄片的均匀分散,导致液体(LL)中的激光片段化之后的GQDS形成,而不是在液体(LAL)机构中的激光烧蚀。 GQD的最终产物表现出原始石墨烯本身的不同结构,化学和光学性质。然而,当在PLA工艺期间没有使用高功率超声时,易于形成具有丰富表面氧富氧的官能团的石墨烯氧化物量子点(GOQDS)。 GQDS和GOQDS显示出明显不同的发光性质。因此,通过简单地在PLA处理期间打开和关闭,可以通过简单地转动高功率超声来实现功能性GQD或GOQDS的选择性生产。我们认为,我们在这项工作中提出的修改的解放军进程将进一步开辟宽带和简单的设计函数碳材料。

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