ArticleScientific reports2023
Pure and doped carbon quantum dots as fluorescent probes for the detection of phenol compounds and antibiotics in aquariums.
Article in Scientific reports, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed, 41 citations in OpenAlex.
- From laboratory to field: a critical review of multi-modal sensing frameworks for emerging contaminant monitoring.Mikrochimica acta · 2026Review
- Stable nitrogen-doped carbon quantum dots with pH-controlled fluorescence response for FeScientific reports · 2026Article
- Carbon Dots: Emerging Nanomaterials for Ovarian Cancer Diagnosis and Therapy.Current drug targets · 2026Review
- Ultrasensitive optical detection of FeScientific reports · 2025Article
- Article
- Design of novel chromatographic stationary phases based on long-chain ionic liquid-derived carbon quantum dots, with embedded polar groups and imidazoles, for the separation of multiple compounds.Mikrochimica acta · 2025Article
- Surface interactions of gelatin-sourced carbon quantum dots with a model globular protein: insights into carbon-based nanomaterials and biological systems.Nanoscale advances · 2025Article
- Carbon Quantum Dot Nanoparticles Enhance the Efficacy of Spodoptera littoralis Nucleopolyhedrovirus Suspoemulsion.Archives of insect biochemistry and physiology · 2025Article
- Manifestation of Donor-Acceptor Properties of N-Doped Polymer Carbon Dots During Hydrogen Bonds Formation in Different Solvents.Polymers · 2024Article
- Carbon quantum dots in bioimaging and biomedicines.Frontiers in bioengineering and biotechnology · 2023Review
Corrections and comments
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Authors and funding
5 authors at 3 institutions in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
The resulting antibiotic residue and organic chemicals from continuous climatic change, urbanization and increasing food demand have a detrimental impact on environmental and human health protection. So, we created a unique B, N-CQDs (Boron, Nitrogen doping carbon quantum dots) based fluorescent nanosensor to investigate novel sensing methodologies for the precise and concentrated identification of antibiotics and phenol derivatives substances to ensure that they are included in the permitted percentages. The as-prepared highly fluorescent B, N-CQDs had a limited range of sizes between 1 and 6 nm and average sizes of 2.5 nm in our study. The novel B, N-CQDs showed high sensitivity and selectivity for phenolic derivatives such as hydroquinone, resorcinol, and para aminophenol, as well as organic solvents such as hexane, with low detection limits of 0.05, 0.024, 0.032 and 0.013 µM respectively in an aqueous medium. The high fluorescence B, N-CQDs probes were examined using transmission electron microscopy (TEM), X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FTIR), and UV/VIS spectroscopy. The outcomes were compared to carbon quantum dots (CQDs) previously generated from Urea.
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