2018
DOI: 10.1016/j.carbon.2018.09.015
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Surface state selective tunable emission of graphene quantum dots exhibiting novel thermal quenching characteristics

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Cited by 31 publications
(24 citation statements)
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“…The application of molecular carbonization method is relatively challenging. Since the size and structure of GQDs cannot be accurately controlled, the GQDs obtained using this method is multi-dispersive [118][119][120].…”
Section: Molecular Carbonization Methodsmentioning
confidence: 99%
“…The application of molecular carbonization method is relatively challenging. Since the size and structure of GQDs cannot be accurately controlled, the GQDs obtained using this method is multi-dispersive [118][119][120].…”
Section: Molecular Carbonization Methodsmentioning
confidence: 99%
“…The principle involved is to dehydrate organic biomolecules and then subject them to carbonization. The process involves hydrothermal reaction to dehydrate carbon bonds, followed by the interface of hydrogen bonds of one carboncontaining molecule to adjacent one forming water molecule and final interface with covalent bonds to form GQDs [91][92][93] . Next, Qu and colleagues demonstrated a hydrothermal route to prepare N-GQDs and N, S co-doped GQDs using CA, urea, and thiourea as the source of C, N, and S, respectively 94 .…”
Section: Bottom-up Approachesmentioning
confidence: 99%
“…The thermochemical decomposition or pyrolysis of citric acid (CA) is a frequently used approach for GQD production. GQDs are efficiently produced at a relatively low temperature (200 °C), in an ambient atmosphere, and within short times (40 min) [ 41 ]. It is observed that the temperature of annealing has an impact on the photoluminescence properties of GQDs.…”
Section: Graphene Quantum Dots Synthetic Strategiesmentioning
confidence: 99%