2018
DOI: 10.3390/s18020658
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Methionine-Capped Gold Nanoclusters as a Fluorescence-Enhanced Probe for Cadmium(II) Sensing

Abstract: Gold nanoclusters (Au NCs) have been considered as novel heavy metal ions sensors due to their ultrafine size, photo-stability and excellent fluorescent properties. In this study, a green and facile method was developed for the preparation of fluorescent water-soluble gold nanoclusters with methionine as a stabilizer. The nanoclusters emit orange fluorescence with excitation/emission peaks at 420/565 nm and a quantum yield of about 1.46%. The fluorescence of the Au NCs is selectively and sensitively enhanced b… Show more

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Cited by 26 publications
(8 citation statements)
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“…Furthermore, different types of analytes [ 186–230 ] such as Zn 2+ ions, [ 186 ] ascorbic acid, [ 187 ] norfloxacin, [ 188 ] GSH, [ 189 ] PO 4 3− , [ 190 ] lysozyme, [ 191 ] Hg 2+ , [ 192 ] Cd 2+ , [ 193 ] Al 3+ , [ 194 ] metal ions (Hg 2+ , Ag + and Cd 2+ ), [ 195,196 ] quercetin, [ 197 ] Cr 6+ , [ 198 ] Hg 2+ ion, [ 199 ] melamine and Hg 2+ ion, [ 200 ] trinitrophenol, [ 201 ] H 2 S, [ 202 ] Pb 2+ , [ 203 ] Al 3+ ion, [ 204 ] Zn 2+ , [ 205 ] Hg 2+ ion, [ 206 ] MiR‐155, [ 207 ] melamine, [ 209 ] dopamine, [ 215 ] DNA, [ 216 ] 5‐hydroxytryptamine [ 218 ] and picric acid [ 230 ] have been recognized by using various ultra‐small nanostructure materials as probes in fluorescence spectrometry. Orange‐emissive Au NCs were prepared by using auric chloride and GSH as precursors and used as a sensor to detect Zn 2+ ions with a wider linear range from 4.68 to 2,240 μM.…”
Section: Applications Of Multicolour‐emissive Nanomaterialsmentioning
confidence: 99%
“…Furthermore, different types of analytes [ 186–230 ] such as Zn 2+ ions, [ 186 ] ascorbic acid, [ 187 ] norfloxacin, [ 188 ] GSH, [ 189 ] PO 4 3− , [ 190 ] lysozyme, [ 191 ] Hg 2+ , [ 192 ] Cd 2+ , [ 193 ] Al 3+ , [ 194 ] metal ions (Hg 2+ , Ag + and Cd 2+ ), [ 195,196 ] quercetin, [ 197 ] Cr 6+ , [ 198 ] Hg 2+ ion, [ 199 ] melamine and Hg 2+ ion, [ 200 ] trinitrophenol, [ 201 ] H 2 S, [ 202 ] Pb 2+ , [ 203 ] Al 3+ ion, [ 204 ] Zn 2+ , [ 205 ] Hg 2+ ion, [ 206 ] MiR‐155, [ 207 ] melamine, [ 209 ] dopamine, [ 215 ] DNA, [ 216 ] 5‐hydroxytryptamine [ 218 ] and picric acid [ 230 ] have been recognized by using various ultra‐small nanostructure materials as probes in fluorescence spectrometry. Orange‐emissive Au NCs were prepared by using auric chloride and GSH as precursors and used as a sensor to detect Zn 2+ ions with a wider linear range from 4.68 to 2,240 μM.…”
Section: Applications Of Multicolour‐emissive Nanomaterialsmentioning
confidence: 99%
“…In general the luminescence quenching phenomenon occurs through photo-induced electron transfer (PET) process via static or dynamic interaction between probe and the analyte [40][41][42][43][44][45][46][47][48]. However, the turn-on sensing is uncommon and the underlying mechanism may be very distinct for different probes [49][50][51]. The TCSPC measurement was performed to record the excited state lifetime values of AuAg cluster upon gradual addition of Cu 2+ , Fe 3+ , Hg 2+ and Cd 2+ (Fig.…”
Section: Dynamic Light Scattering (Dls) and Tcspc Analysismentioning
confidence: 99%
“…The advantages of luminescence sensing of analytes includes very high sensitivity and selectivity, low cost, on the spot testing feasibility and fast response time [38] Luminescence quenching (Turn-OFF) is the most dominant pathway of sensing analytes demonstrated by various metal clusters and we may ascribe its origin through electron/energy transfer from metal cluster to analyte through a static or dynamic adduct formation mechanism [44][45][46][47][48]. Luminescence enhancement (Turn-ON) based sensing of analytes is more advantageous but is less common and it follows a distinct mechanism than the previous one [49][50][51]. In metal ion sensing, the ions may interact with surface ligands, or it may interact with surface metal atoms of the cluster and may also form a different alloy resulting a luminescence response.…”
Section: Introductionmentioning
confidence: 99%
“…For example, orange-emitting fluorescence AuNCs with methionine as a stabilizer, was synthesized to detect Cd(II) ions in water by a fluorescent enhancement mechanism with a LOD of 12.25 nM. In this case 10 cations and 11 anions were tested but only the presence of Cd(II) in solution causes the AuNCs aggregation due to the link between Cd(II) and Au via chelating bonds with a carboxyl group or an amino group in methionine adsorbed on the Au nanoclusters [ 83 ].…”
Section: Recent Developments On the Heavy Metal Ions Detectionmentioning
confidence: 99%