论文标题

无氮有序的碳量子点的综合模型

A Comprehensive Model of Nitrogen-Free Ordered Carbon Quantum Dots

论文作者

Boukhvalov, D. W., Osipov, V. Yu., Hogan, B. T., Baldycheva, A.

论文摘要

我们提出并展示了一种新型模型,以准确确定具有有序石墨烯层状结构的无氮碳量点(CQD)的光学性质。我们确认了模型的结果,可根据对文献的广泛综述的CQD的全部实验结果。这些模型可以同样应用于具有变化尺寸的CQD,并且在组成石材片的基础平面中具有不同的氧含量。我们证明,无氮CQD的实验观察到的蓝色荧光发射可以与石墨片外围的小氧化区域相关,或者与SP2-杂交碳的亚纳米非官能化岛的非官能化岛相关,并在氧化石墨烯层的氧化晶烯片中固定在高的对称性中。在功能化石墨烯薄板中心的较大和/或更少的对称非官能化区域被发现是无氮CQD的绿色甚至红色荧光发射的来源。我们还展示了一种方法来简化通过等效的多环芳族烃的取代,简化了讨论的SP2-ISLANDS的建模。此外,我们表明CQD的带隙(和光致发光)不取决于石墨烯片的平面外或SP2-岛之间的间距。有利地,我们提出的模型表明,无需涉及发光的多环芳族分子(纳米仪),其任意结构移植到粒子外围,以解释在整个实验范围内观察到的CQD的大量光学现象。

We propose and demonstrate a novel range of models to accurately determine the optical properties of nitrogen-free carbon quantum dots (CQDs) with ordered graphene layered structures. We confirm the results of our models against the full range of experimental results for CQDs available from an extensive review of the literature. The models can be equally applied to CQDs with varied sizes and with different oxygen content in the basal planes of the constituent graphenic sheets. We demonstrate that the experimentally observed blue fluorescent emission of nitrogen-free CQDs can be associated with either small oxidised areas on the periphery of the graphenic sheets, or with sub-nanometre non-functionalised islands of sp2-hybridised carbon with high symmetry confined in the centres of oxidised graphene sheets. Larger and/or less symmetric non-functionalised regions in the centre of functionalised graphene sheet are found to be sources of green and even red fluorescent emission from nitrogen-free CQDs. We also demonstrate an approach to simplify the modelling of the discussed sp2-islands by substitution with equivalent strained polycyclic aromatic hydrocarbons. Additionally, we show that the bandgaps (and photoluminescence) of CQDs are not dependent on either out-of-plane corrugation of the graphene sheet or the spacing between sp2-islands. Advantageously, our proposed models show that there is no need to involve light-emitting polycyclic aromatic molecules (nanographenes) with arbitrary structures grafted to the particle periphery to explain the plethora of optical phenomena observed for CQDs across the full range of experimental works.

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