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Facile synthesis of nitrogen-doped carbon dots as sensitive fluorescence probes for selective recognition of cinnamaldehyde and l-Arginine/l-Lysine in living cells

Shanshan Wei, Xinyuan Shi, Chenzhao Wang, Hongyuan Zhang, Chunzhu Jiang, Chunzhu Jiang, Guoying Sun, Chunhuan Jiang, Chunhuan Jiang

2022Spectrochimica Acta Part A Molecular and Biomolecular Spectroscopy15 citationsDOI

Topics & Concepts

FluorescenceCinnamaldehydeBiocompatibilityHydrothermal carbonizationChemistryLysineAnalyteSelectivityMoleculeDetection limitPhotoluminescenceCarbon fibersArginineFörster resonance energy transferNanotechnologyCombinatorial chemistryPhotochemistryMaterials scienceAmino acidCarbonizationAdsorptionBiochemistryOrganic chemistryChromatographyCatalysisQuantum mechanicsOptoelectronicsComposite numberPhysicsComposite materialCarbon and Quantum Dots ApplicationsAdvanced biosensing and bioanalysis techniquesNanocluster Synthesis and Applications
Facile synthesis of nitrogen-doped carbon dots as sensitive fluorescence probes for selective recognition of cinnamaldehyde and l-Arginine/l-Lysine in living cells | Litcius