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Highly fluorescent nitrogen-doped graphene quantum dots (N-GQDs) as an efficient nanoprobe for imaging of microbial cells

Roma Jain, Ravi Vithalani, Dikin Patel, Urvi M. Lad, Chetan K. Modi, Devesh Suthar, Jaydip D. Solanki, Kiran R. Surati

2021Fullerenes Nanotubes and Carbon Nanostructures25 citationsDOI

Abstract

Carbon, being a material of the era, has vast usefulness in the synthesis of many novel compounds. One of them is graphene quantum dots (GQDs) have drawn a great deal of attention to the scientific community owing to their low cytotoxicity, higher optical stability, and tremendous photoluminescence (PL) property, which show a new insight in the field of bio-sensing and bio-imaging. Herein, we have demonstrated a facile method to synthesise N-doped GQDs from graphene oxide (GO) using solvothermal treatment with aprotic solvent. GO was synthesised using a modified Hummers’ method. The as-prepared N-GQDs showed stronger green emission with 326 nm wavelength. PL study showed that PL characteristics of as-synthesised N-GQDs are mainly due to the surface π→π* and n→π* transitions of N containing functional groups with skeletal carbons of the graphene oxide sheet. The N-GQDs were also examined for bio-imaging of microbial cells including E. coli and Saccharomyces cescerevisiae yeast. The results (blue and green emissions under a fluorescence microscope) of this study showed biocompatibility and the photostability of N-GQDs for their application in the fields ranging from energy to biomedicine.

Topics & Concepts

GraphenePhotoluminescenceNanoprobeQuantum dotBiocompatibilityMaterials scienceNanotechnologyFluorescenceOxideCarbon fibersChemical engineeringNanoparticleOptoelectronicsComposite numberOpticsComposite materialPhysicsEngineeringMetallurgyCarbon and Quantum Dots ApplicationsGraphene and Nanomaterials ApplicationsNanocluster Synthesis and Applications
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