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Hydrophilic AgInZnS quantum dots as a fluorescent turn-on probe for Cd2+ detection
Umeå universitet, Teknisk-naturvetenskapliga fakulteten, Institutionen för fysik. Key Laboratory of Optoelectronic Technology & Systems of the Education Ministry of China, College of Optoelectronic Engineering, Chongqing University, Chongqing 400044, China.ORCID-id: 0000-0002-3556-9593
Chongqing University.
Chongqing University.
Chongqing University.
Vise andre og tillknytning
2021 (engelsk)Inngår i: Journal of Alloys and Compounds, ISSN 0925-8388, E-ISSN 1873-4669, artikkel-id 158109Artikkel i tidsskrift (Fagfellevurdert) Published
Abstract [en]

Quantum dots (QDs) are intensively studied and developed for the detection of toxic heavy metal ions, notably Cd2+. However, a severe drawback is that the probing QDs themselves often are based on highly toxic elements, such as Pb or Cd. Here, we report on a one-step aqueous synthesis of more benign and hydrophilic AgInZnS QDs using 3-mercaptopropionic acid as a ligand with a high photoluminescence quantum yield of up to 41%, which were successfully employed as a fluorescent probe with a turn-on mode for detection of Cd2+ in aqueous solutions. Specifically, we determine that the effective detection range of Cd2+ in aqueous solution is 0.1–290 μM, with the lower limit of detection being 37.8 nM. We further establish that the excellent turn-on detection of Cd2+ is due to that surface defects on the AgInZnS QDs are effectively passivated by the Cd2+, as verified by a prolonged fluorescent lifetime and an increased photoluminescence quantum yield. We finally demonstrate that the AgInZnS QD probe is capable of detecting Cd2+ in lake water samples, and that it meets the WHO standard.

sted, utgiver, år, opplag, sider
Elsevier, 2021. artikkel-id 158109
Emneord [en]
AgInZnS, Quantum dots, Fluorescence, Probe, Cd2+ detection, Defect passivation
HSV kategori
Forskningsprogram
fysikalisk kemi
Identifikatorer
URN: urn:nbn:se:umu:diva-177770DOI: 10.1016/j.jallcom.2020.158109ISI: 000624942300012Scopus ID: 2-s2.0-85097452921OAI: oai:DiVA.org:umu-177770DiVA, id: diva2:1511094
Forskningsfinansiär
The Kempe FoundationsSwedish Research CouncilSwedish Energy AgencyTilgjengelig fra: 2020-12-17 Laget: 2020-12-17 Sist oppdatert: 2021-07-05bibliografisk kontrollert

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Liu, Yong-fengEdman, LudvigWang, Jia

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