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Gold nanoclusters Cys-Au NCs as selective fluorescent probes for "on-off-on" detection of Fe3+ and ascorbic acid.


ABSTRACT: Gold nanoclusters exhibit attractive properties owing to their excellent biocompatibility and strong photostability in the biomedical domain. In this research, cysteine-protected fluorescent gold nanoclusters (Cys-Au NCs) were synthesized via decomposing Au(i)-thiolate complexes for the detection of Fe3+ and ascorbic acid in a bidirectional "on-off-on" mode. Meanwhile, the detailed characterization confirmed that the mean particle size of the prepared fluorescent probe was 2.43 nm and showed a fluorescence quantum yield of 3.31%. In addition, our results indicate that the fluorescence probe for ferric ions exhibited a broad detection scope ranging from 0.1 to 2000 μM and excellent selectivity. The as-prepared Cys-Au NCs/Fe3+ was demonstrated to be an ultrasensitive and selective nanoprobe for the detection of ascorbic acid. This study indicated that the "on-off-on" fluorescent probes Cys-Au NCs held a promising application for the bidirectional detection of Fe3+ and ascorbic acid. Furthermore, our novel "on-off-on" fluorescent probes provided insight into the rational design of thiolate-protected gold nanoclusters for biochemical analysis of high selectivity and sensitivity.

SUBMITTER: Luo W 

PROVIDER: S-EPMC9990083 | biostudies-literature | 2023 Mar

REPOSITORIES: biostudies-literature

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Gold nanoclusters Cys-Au NCs as selective fluorescent probes for "on-off-on" detection of Fe<sup>3+</sup> and ascorbic acid.

Luo Wenjie W   Wang Changxu C   Min Jieshu J   Luo Huiyu H  

RSC advances 20230307 11


Gold nanoclusters exhibit attractive properties owing to their excellent biocompatibility and strong photostability in the biomedical domain. In this research, cysteine-protected fluorescent gold nanoclusters (Cys-Au NCs) were synthesized <i>via</i> decomposing Au(i)-thiolate complexes for the detection of Fe<sup>3+</sup> and ascorbic acid in a bidirectional "on-off-on" mode. Meanwhile, the detailed characterization confirmed that the mean particle size of the prepared fluorescent probe was 2.43  ...[more]

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