Magnetic Fluorescent Quantum Dots Nanocomposites in Food Contaminants Analysis: Current Challenges and Opportunities
Магнитные флуоресцентные нанокомпозиты на основе квантовых точек для анализа пищевых контаминантов: современные проблемы и перспективы
2022-04-07
SCID: 54.1/r2mdazpp
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fluorescence detectionfood contaminants analysisfoodborne pathogensmagnetic fluorescent quantum dotsmagnetic nanoparticles
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Abstract (AI)
The presence of food contaminants can cause foodborne illnesses, posing a severe threat to human health. Therefore, a rapid, sensitive, and convenient method for monitoring food contaminants is eagerly needed. The complex matrix interferences of food samples and poor performance of existing sensing probes bring significant challenges to improving detection performances. Nanocomposites with multifunctional features provide a solution to these problems. The combination of the superior characteristics of magnetic nanoparticles (MNPs) and quantum dots (QDs) to fabricate magnetic fluorescent quantum dots (MNPs@QDs) nanocomposites are regarded as an ideal multifunctional probe for food contaminants analysis. The high-efficiency pretreatment and rapid fluorescence detection are concurrently integrated into one sensing platform using MNPs@QDs nanocomposites. In this review, the contemporary synthetic strategies to fabricate MNPs@QDs, including hetero-crystalline growth, template embedding, layer-by-layer assembly, microemulsion technique, and one-pot method, are described in detail, and their advantages and limitations are discussed. The recent advances of MNPs@QDs nanocomposites in detecting metal ions, foodborne pathogens, toxins, pesticides, antibiotics, and illegal additives are comprehensively introduced from the perspectives of modes and detection performances. The review ends with current challenges and opportunities in practical applications and prospects in food contaminants analysis, aiming to promote the enthusiasm for multifunctional sensing platform research.
Key Findings
1
Combining magnetic nanoparticles and quantum dots addresses food-matrix interference and limitations of existing sensing probes for contaminant analysis.
2
Magnetic fluorescent quantum-dot nanocomposites have been applied to detect metal ions, foodborne pathogens, toxins, pesticides, antibiotics, and illegal additives.
3
Magnetic fluorescent quantum-dot nanocomposites integrate efficient magnetic sample pretreatment with rapid fluorescence detection in a single platform.
4
Practical deployment remains constrained by unresolved challenges, motivating further research into multifunctional sensing platforms for food contaminant monitoring.
5
The review compares five fabrication strategies: hetero-crystalline growth, template embedding, layer-by-layer assembly, microemulsion, and one-pot synthesis.
Research Object
Magnetic fluorescent quantum dots (MNPs@QDs) nanocomposites used as sensing probes for food contaminants
Research Subject
The synthesis strategies, detection applications, performance, challenges, and prospects of MNPs@QDs nanocomposites for food contaminant analysis
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2022-04-07
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