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Bottom-Up Fabrication of Single-Layered Nitrogen-Doped Graphene Quantum Dots through Intermolecular Carbonization Arrayed in a 2D Plane

机译:通过二维平面内排列的分子间碳化,自底向上掺杂氮的石墨烯量子点的自底向上制造。

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摘要

A single-layered intermolecular carbonization method was applied to synthesize single-layered nitrogen-doped graphene quantum dots (N-GQDs) by using 1,3,5-triamino-2,4,6-trinitrobenzene (TATB) as the only precursor. In this method, the gas produced in the pyrolysis of TATB assists with speeding up of the reactions and expanding the layered distance, so that it facilitates the formation of single-layered N-GQDs (about 80%). The symmetric intermolecular carbonizations of TATB arrayed in a plane and six nitrogen-containing groups ensure small, uniform sizes (2-5 nm) of the resulting products, and provide high nitrogen-doping concentrations (N/C atomic ratio ca. 10.6 %). In addition to release of the produced gas, TATB is almost completely converted into aggregated N-GQDs; thus, relatively higher production rates are possible with this approach. Investigations show that the as-produced N-GQDs have superior fluorescent characteristics; high water solubility, biocompatibility, and low toxicity; and are ready for potential applications, such as biomedical imaging and optoelectronic devices.
机译:采用单层分子间碳化法,以1,3,5-三氨基-2,4,6-三硝基苯(TATB)为唯一前驱体,合成了单层氮掺杂石墨烯量子点(N-GQDs)。在这种方法中,TATB的热解过程中产生的气体有助于加快反应速度并扩大分层距离,从而有助于形成单层N-GQD(约80%)。排列在一个平面上的TATB和六个含氮基团的对称分子间碳化作用可确保所得产品的尺寸小而均匀(2-5 nm),并提供高的氮掺杂浓度(N / C原子比约为10.6%) 。除了释放产生的气体外,TATB几乎完全转化为聚集的N-GQD。因此,使用这种方法可以实现相对较高的生产率。研究表明,所生产的N-GQD具有优异的荧光特性;高水溶性,生物相容性和低毒性;并已准备好用于潜在的应用,例如生物医学成像和光电设备。

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