6533b85afe1ef96bd12b8c5e
RESEARCH PRODUCT
Identification of microplastics using 4‐dimethylamino‐4′‐nitrostilbene solvatochromic fluorescence
Bruno PignataroFrancesco P. BonomoValeria VetriDelia Francesca Chillura MartinoMariano LicciardiVittorio FerraraGiuseppe Sancataldosubject
MicroplasticsmicroplasticsHistologyMaterials sciencePolymers02 engineering and technologyPhotochemistrylaw.invention03 medical and health sciences0302 clinical medicineConfocal microscopylawWater environmentFluorescence microscopeEmission spectrumInstrumentationSettore CHIM/02 - Chimica Fisicachemistry.chemical_classificationSolvatochromism030206 dentistryPolymer021001 nanoscience & nanotechnologyFluorescencespectral analysisSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)phasor analysisMedical Laboratory TechnologychemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoDANSenvironmental pollutionAnatomy0210 nano-technologyPlasticsWater Pollutants ChemicalEnvironmental Monitoringdescription
In this work, we introduce the use of 4-dimethylamino-4'-nitrostilbene (DANS) fluorescent dye for applications in the detection and analysis of microplastics, an impendent source of pollution made of synthetic organic polymers with a size varying from less than 5 mm to nanometer scale. The use of this dye revealed itself as a versatile, fast and sensitive tool for readily discriminate microplastics in water environment. The experimental evidences herein presented demonstrate that DANS efficiently absorbs into a variety of polymers constituting microplastics, and its solvatochromic properties lead to a positive shift of the fluorescence emission spectrum according to the polarity of the polymers. Therefore, under UV illumination, microplastics glow a specific emission spectrum from blue to red that allows for a straightforward polymer identification. In addition, we show that DANS staining gives access to different detection and analysis strategies based on fluorescence microscopy, from simple epifluorescence fragments visualization, to confocal microscopy and phasor approach for plastic components quantification.
year | journal | country | edition | language |
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2021-05-04 | Microscopy Research and Technique |