Application of quantum dots as analytical tools in automated chemical analysis: A review |
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Authors: | Christian FrigerioAuthor Vitae,David S.M. RibeiroAuthor VitaeS. Sofia M. RodriguesAuthor Vitae,Vera L.R.G. AbreuAuthor VitaeJoã o A.C. BarbosaAuthor Vitae,Joã o A.V. PriorAuthor VitaeKarine L. MarquesAuthor Vitae,Joã o L.M. Santos |
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Affiliation: | REQUIMTE, Laboratory of Applied Chemistry, Department of Chemical Sciences, Faculty of Pharmacy of Porto University, Rua Jorge Viterbo Ferreira, 228, 4050-313 Porto, Portugal |
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Abstract: | Colloidal semiconductor nanocrystals or quantum dots (QDs) are one of the most relevant developments in the fast-growing world of nanotechnology. Initially proposed as luminescent biological labels, they are finding new important fields of application in analytical chemistry, where their photoluminescent properties have been exploited in environmental monitoring, pharmaceutical and clinical analysis and food quality control. Despite the enormous variety of applications that have been developed, the automation of QDs-based analytical methodologies by resorting to automation tools such as continuous flow analysis and related techniques, which would allow to take advantage of particular features of the nanocrystals such as the versatile surface chemistry and ligand binding ability, the aptitude to generate reactive species, the possibility of encapsulation in different materials while retaining native luminescence providing the means for the implementation of renewable chemosensors or even the utilisation of more drastic and even stability impairing reaction conditions, is hitherto very limited. In this review, we provide insights into the analytical potential of quantum dots focusing on prospects of their utilisation in automated flow-based and flow-related approaches and the future outlook of QDs applications in chemical analysis. |
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Keywords: | Nanocrystals Quantum dots Analytical chemistry Flow analysis Chromatography Electrophoresis Fluorescence Chemiluminescence |
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