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- W2960134433 abstract "We report for the first time the selective and sensitive detection of Fe3+ by a label-free fluorescent sensor base on [email protected] [email protected] was synthesized, and the averaged size is about 3.0 nm, and the maximal excitation and emission wavelengths were 335 nm and 480 nm, respectively. Fe3+ caused a significantly fluorescence quenching of [email protected], and a novel and label-free nanosensor for detecting Fe3+ was developed with optimum detection of 303.15 K and 2 min. The linear range for Fe3+ detection was 0.1˜12 μM with the corresponding limit of detection (LOD) of 86 nM. Furthermore, the preliminary detection mechanism was discussed in detail, and the fluorescence quenching was deemed to result from [email protected] aggregation induced with a relatively weak mutual collision between [email protected] and Fe3+. This strategy detection of Fe3+ will provide a valuable reference for the detection of metal ions by using nanocluster." @default.
- W2960134433 created "2019-07-23" @default.
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- W2960134433 date "2019-10-01" @default.
- W2960134433 modified "2023-10-11" @default.
- W2960134433 title "Label-free and ultrasensitive fluorescence assay for Fe3+ detection using DNA-Templated Ag nanoclusters" @default.
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- W2960134433 doi "https://doi.org/10.1016/j.colsurfa.2019.123656" @default.
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