A Comprehensive Model of Nitrogen-Free Ordered Carbon Quantum Dots
D.W. Boukhvalov, V.Yu. Osipov, B.T. Hogan, A. Baldycheva

TL;DR
This paper introduces comprehensive models for predicting the optical properties of nitrogen-free carbon quantum dots, aligning well with experimental data and clarifying the origins of their fluorescence without relying on complex grafted molecules.
Contribution
The paper presents novel, validated models that accurately describe the optical behavior of nitrogen-free CQDs, emphasizing their structural features and simplifying the modeling process.
Findings
Blue emission linked to oxidised edges or sp2 islands
Green and red emissions from larger or less symmetric regions
Models eliminate need for grafted nanographenes to explain optical phenomena
Abstract
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…
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Taxonomy
TopicsCarbon and Quantum Dots Applications · Graphene research and applications · Carbon Nanotubes in Composites
