L-Cysteine-capped core/shell/shell quantum dot-graphene oxide nanocomposite fluorescence probe for polycyclic aromatic hydrocarbon detection

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dc.contributor.author Adegoke, Oluwasesan
dc.contributor.author Forbes, Patricia B.C.
dc.date.accessioned 2016-07-27T07:51:42Z
dc.date.issued 2016-01
dc.description.abstract Environmental pollutants, such as the polycyclic aromatic hydrocarbons (PAHs),become widely distributed in the environment after emission from a range of sources, and they have potential biological effects, including toxicity and carcinogenity. In this work, we have demonstrated the analytical potential of a covalently linked L-cysteine-capped CdSeTe/ZnSe/ZnS core/shell/shell quantum dot (QD)-graphene oxide (GO) nanocomposite fluorescence probe to detect PAH compounds in aqueous solution. Water-soluble L-cysteine-capped CdSeTe/ZnSe/ZnS QDs were synthesized for the first time and were covalently bonded to GO. The fluorescence of the QD-GO nanocomposite was enhanced relative to the unconjugated QDs. Various techniques including TEM, SEM, HRSEM, XRD, Raman, FT-IR, UV/vis and fluorescence spectrophotometry were employed to characterize both the QDs and the QD-GO nanocomposite. Four commonly found priority PAH analytes namely; phenanthrene (Phe), anthracene (Ant), pyrene (Py) and naphthalene (Naph), were tested and it was found that each of the PAH analytes enhanced the fluorescence of the QD-GO probe. Phe was selected for further studies as the PL enhancement was significantly greater for this PAH. A limit of detection (LOD) of 0.19 μg/L was obtained for Phe under optimum conditions, whilst the LOD of Ant, Py and Naph were estimated to be ~0.26 μg/L. The fluorescence detection mechanism is proposed. en_ZA
dc.description.department Chemistry en_ZA
dc.description.embargo 2017-01-31
dc.description.librarian hb2016 en_ZA
dc.description.uri http://www.elsevier.com/locate/talanta en_ZA
dc.identifier.citation Adegoke, O & Forbes, PBC 2016, 'L-Cysteine-capped core/shell/shell quantum dot-graphene oxide nanocomposite fluorescence probe for polycyclic aromatic hydrocarbon detection', Talanta, vol. 146, pp. 780-788. en_ZA
dc.identifier.issn 0039-9140 (print)
dc.identifier.issn 1873-3573 (online)
dc.identifier.other 10.1016/j.talanta.2015.06.023
dc.identifier.uri http://hdl.handle.net/2263/56048
dc.language.iso en en_ZA
dc.publisher Elsevier en_ZA
dc.rights © 2015 Elsevier B.V. All rights reserved. Notice : this is the author’s version of a work that was accepted for publication in Talanta. Changes resulting from the publishing process, such as peer review, editing, corrections, structural formatting, and other quality control mechanisms may not be reflected in this document. Changes may have been made to this article since it was submitted for publication. A definitive version was subsequently published in Talanta, vol. 146, pp. 780-788, 2016. doi : 10.1016/j.talanta.2015.06.023. en_ZA
dc.subject Quantum dots (QDs) en_ZA
dc.subject Graphene oxide en_ZA
dc.subject Adsorption en_ZA
dc.subject Photoluminescence en_ZA
dc.subject Polycyclic aromatic hydrocarbon en_ZA
dc.subject Fluorescence sensor en_ZA
dc.title L-Cysteine-capped core/shell/shell quantum dot-graphene oxide nanocomposite fluorescence probe for polycyclic aromatic hydrocarbon detection en_ZA
dc.type Postprint Article en_ZA


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