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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Mass production of tunable multicolor graphene quantum dots from an energy resource of coke by a one-step electrochemical exfoliation
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Mass production of tunable multicolor graphene quantum dots from an energy resource of coke by a one-step electrochemical exfoliation

机译:通过一步电化学剥离,从焦炭的能量资源进行可调谐多色石墨烯量子点的批量生产

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摘要

Herein, we originally propose a simple and facile one-step electrochemical exfoliation approach to synthesize in large scale graphene quantum dots (GQDs) from low-cost energy resource of coke. We found that the GQDs emerged multi-color fluorescence by adjusting the water content of electrolyte solution and applying current density, which effectually caused green-GQDs (G-GQDs), yellow-GQDs (YGQDs), and orange-GQDs (O-GQDs) of regular micro-variation in size from 3.02 to 4.61 nm with the fluorescence emissions at 500, 530 and 560 nm, respectively. Furthermore, blue-GQDs (B-GQDs) with emission at 440 nm can be obtained by reducing G-GQDs with NaBH4 at room temperature for 4 h. The quantum yields of B-, G-, Y- and O-GQDs are obtained up to 19.27%, 8.47%, 7.90% and 9.24%, respectively. The B-, G-, Y- and O-GQDs with high yields severally corresponding to 13.04 wt%, 17.88 wt%, 42.86 wt% and 31.13 wt%, possess scalable and industrial production prospect. All four types of GQDs were fully characterized and the electrochemical production mechanism of these GQDs has been also investigated in full. Additionally, GQDs were also available to fabricate their solid-state GQDs/epoxy composites for potential applications in multicolor light-emitting diode devices. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在此,我们最初提出了一种简单的有一步的一步电化学剥离方法,从焦炭的低成本能量资源中合成大规模石墨烯量子点(GQD)。我们发现GQD通过调节电解质溶液的含水量并施加电流密度来发动多色荧光,从而有效导致绿色GQDS(G-GQDS),黄色GQDS(YGQDS)和橙色GQDS(O-GQDS )常规微变化的大小为3.02至4.61nm,分别为500,530和560nm的荧光发射。此外,通过在室温下在室温下将G-GQD与NaBH 4减少4小时,可以获得440nm的发射的Blue-GQDS(B-GQDS)。 B-,G-,Y-和O-GQD的量子产率可分别获得高达19.27%,8.47%,7.90%和9.24%。具有高产率的B-,G-,Y和O-GQDs,相当于13.04wt%,17.88wt%,42.86wt%和31.13重量%,具有可扩展性和工业的产量前景。所有四种类型的GQD都完全表征,并且已经全面研究了这些GQD的电化学生产机制。另外,GQD也可用于制造它们的固态GQD /环氧复合材料,用于多色发光二极管器件中的潜在应用。 (c)2018年elestvier有限公司保留所有权利。

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