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Synthesis, Purification, and Characterization of Carbon Dots from Non-Activated and Activated Pyrolytic Carbon Black

Reyna Berenice González-González, Lucy Teresa González, Marc Madou, César Leyva‐Porras, Sergio O. Martínez‐Chapa, Alberto Mendoza

2022Nanomaterials154 citationsDOIOpen Access PDF

Abstract

. The effects caused to the carbon dot properties were analyzed in detail through characterization techniques such as ion chromatography; UV-visible, Fourier-transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), and Raman spectroscopy; ζ potential; transmission electron microscopy (TEM); and spectrofluorometry. The presence of functional groups on the surface of all carbon dots was revealed by UV-visible, FTIR, XPS, and Raman spectra. The higher oxidation degrees of carbon dots from activated precursors compared to those from nonactivated precursors resulted in differences in photoluminescence (PL) properties such as bathochromic shift, lower intensity, and excitation-dependent behavior. The results demonstrate that the use of an activating agent in the recovery of pyrolytic carbon black resulted in carbon dots with different PL properties. In addition, a dialysis methodology is proposed to overcome purification obstacles, finding that 360 h were required to obtain pure carbon dots synthesized by a chemical oxidation method.

Topics & Concepts

Pyrolytic carbonActivated carbonCarbon blackCharacterization (materials science)Carbon fibersMaterials scienceChemical engineeringChemistryNanotechnologyPyrolysisOrganic chemistryAdsorptionComposite materialEngineeringComposite numberNatural rubberCarbon and Quantum Dots ApplicationsNanocluster Synthesis and ApplicationsElectromagnetic wave absorption materials
Synthesis, Purification, and Characterization of Carbon Dots from Non-Activated and Activated Pyrolytic Carbon Black | Litcius