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A Green Synthesis Route to Derive Carbon Quantum Dots for Bioimaging Cancer Cells

Karthiga K. Anpalagan, Jimsheena V. Karakkat, Raz Jelinek, Nila Nandha Kadamannil, Tian Zhang, Ivan Cole, Kulmira Nurgali, Hong Yin, Daniel Lai

2023Nanomaterials44 citationsDOIOpen Access PDF

Abstract

Carbon quantum dots (CQDs) are known for their biocompatibility and versatile applications in the biomedical sector. These CQDs retain high solubility, robust chemical inertness, facile modification, and good resistance to photobleaching, which makes them ideal for cell bioimaging. Many fabrication processes produce CQDs, but most require expensive equipment, toxic chemicals, and a long processing time. This study developed a facile and rapid toasting method to prepare CQDs using various slices of bread as precursors without any additional chemicals. This fast and cost-effective toasting method could produce CQDs within 2 h, compared with the 10 h process in the commonly used hydrothermal method. The CQDs derived from the toasting method could be used to bioimage two types of colon cancer cells, namely, CT-26 and HT-29, derived from mice and humans, respectively. Significantly, these CQDs from the rapid toasting method produced equally bright images as CQDs derived from the hydrothermal method.

Topics & Concepts

BiocompatibilityHydrothermal circulationPhotobleachingCarbon fibersNanotechnologyMaterials scienceCarbon quantum dotsFabricationQuantum dotChemical engineeringChemistryFluorescenceMedicineComposite materialMetallurgyPathologyQuantum mechanicsAlternative medicineEngineeringPhysicsComposite numberCarbon and Quantum Dots ApplicationsNanocluster Synthesis and ApplicationsGraphene and Nanomaterials Applications
A Green Synthesis Route to Derive Carbon Quantum Dots for Bioimaging Cancer Cells | Litcius