Facile, ultrafast synthesis of up- and down-conversion fluorescent carbon dots for highly sensitive detection of hematin
Fluorescent carbon dots (CDs) are promising zero-dimensional carbon nanomaterials with semiconductor-like properties, which have attracted tremendous attention owing to their fascinating features such as excellent optical performance, chemical inertness, and low toxicology. In this investigation, Mg...
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Published in | Optical materials Vol. 107; p. 110029 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Elsevier B.V
01.09.2020
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Subjects | |
Online Access | Get full text |
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Summary: | Fluorescent carbon dots (CDs) are promising zero-dimensional carbon nanomaterials with semiconductor-like properties, which have attracted tremendous attention owing to their fascinating features such as excellent optical performance, chemical inertness, and low toxicology. In this investigation, Mg-doped CDs (Mg-CDs) with up- and down-conversion fluorescence (FL) were prepared within 2 min through a one-pot, facile and ultrafast microwave method. The obtained Mg-CDs showed excitation-independent blue emission and were potentially applied for the detection of hematin based on the strong inner filter effect (IFE). The FL intensity ratio (I0/I) of the synthesized Mg-CDs were proportional to the concentration of hematin in the range of 0.1–75 μM with the limit of detection of 25 nM for Mg-CDs-0.1 and 0.01–25 μM with the limit of detection of 1 nM for Mg-CDs-0.5. Overall, this selective and sensitive assay using Mg-CDs obtained through the current microwave method was believed to demonstrate significant application prospects in complex matrices owing to its simplicity and specificity for hematin.
In this work, we developed a highly sensitive method of detecting hematin by Mg-CDs based on the strong inner filter effect. [Display omitted]
•The Mg-CDs with up- and down-conversion FL can be prepared through a facile, ultrafast microwave synthesis within 2 min.•The FL of Mg-CDs can be quenched by hematin based on IFE, with the LOD of 25 nM (Mg-CDs-0.1) and 1 nM (Mg-CDs-0.5).•The proposed method is highly sensitive and selective, which can be used to detect hematin in healthy human red cells. |
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ISSN: | 0925-3467 1873-1252 |
DOI: | 10.1016/j.optmat.2020.110029 |