grass-derived carbon dots to selectively detect Fe ions
Novel fluorescent carbon dots (CDs) were synthesized using an economically feasible and green one-step heating process. Miscanthus , a perennial grass and an inexpensive sustainable biomass, was utilized as the starting material to prepare CDs and doped CDs (nitrogen, phosphorous and nitrogen-phosph...
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Veröffentlicht in: | RSC advances 2019-03, Vol.9 (15), p.8628-8637 |
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Zusammenfassung: | Novel fluorescent carbon dots (CDs) were synthesized using an economically feasible and green one-step heating process.
Miscanthus
, a perennial grass and an inexpensive sustainable biomass, was utilized as the starting material to prepare CDs and doped CDs (nitrogen, phosphorous and nitrogen-phosphorous dual doped). The abundance of oxygen-containing functional groups in
Miscanthus
-derived CDs (MCD) and doped MCD was confirmed
via
Fourier-transform infrared (FTIR) and energy dispersive X-ray spectroscopy (EDS). The average size of MCD, N-doped MCD, P-doped MCD and dual-doped MCDs was found to be 7.87 ± 0.27, 4.6 ± 0.21, 6.7 ± 0.38 and 5.3 ± 0.32 nm, respectively. The synthesized MCD and doped MCD exhibited a quantum yield (QY) of 4.71, 11.65, 2.33 and 9.63% for the MCD, N-doped MCD, P-doped MCD and dual-doped MCD, respectively. MCD and doped MCD exhibited excellent excitation-dependent photoluminescence properties, with strong blue fluorescence upon irradiation with UV-light (365 nm). N-doped MCD exhibited superb selectivity towards Fe
3+
ions, with a detection limit of 20 nM and a detection range from 0.02 to 2000 μM. The normalized linear relationship between the intensity of fluorescence emission of the prepared N-doped MCD and the concentration of Fe
3+
ions was utilized to selectively and sensitively detect Fe
3+
ions.
Fluorescent carbon dots for the selective and sensitive detection of Fe
3+
ions with a wide detection range and very low detection limit. |
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ISSN: | 2046-2069 |
DOI: | 10.1039/c8ra10051a |