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RESEARCH ARTICLE

Fast synthesis of Hcy-modified Au nanoclusters under microwave-assisted irradiation and their response to Cu (II) ions

, , , , , & ORCID Icon show all
Pages 68-79 | Received 09 Dec 2022, Accepted 17 Aug 2023, Published online: 30 Aug 2023

References

  • Nandi S, Parui S, Halder R, et al. Interaction of proteins with ionic liquid, alcohol and DMSO and in situ generation of gold nano-clusters in a cell[J]. Biophys Rev. 2018;10(3):757–768. doi: 10.1007/s12551-017-0331-1.
  • Yanyan Z, Minghao W, Mingjie W, et al. Study of fluorescence and CT bimodal imaging of ultrasmall gold nanoclusters [J]. Acta Chim Sinica. 2018;76(9):709–714.
  • Jiang X, Zhang H, Yang C, et al. A novel electrostatic drive strategy to prepare glutathione-capped gold nanoclusters embedded quaternized cellulose membranes fluorescent colorimetric sensor for Pb (II) and Hg (II) ions detection[J]. Sens Actuators, B. 2022; 368:132046. doi: 10.1016/j.snb.2022.132046.
  • Wang X, Li L, Li L, et al. Tris (bipyridine) ruthenium (II)-functionalized metal–organic frameworks for the ratiometric fluorescence determination of aluminum ions[J]. Microchim Acta. 2022;189(11):1–10. doi: 10.1007/s00604-022-05504-1.
  • Yuan M, Lian J, Han X, et al. Real-time fluorescence dynamics in one-step synthesis of gold nanoclusters coupling with peptide motifs[J]. Colloids Surf B Biointerfaces. 2022;219:112820. doi: 10.1016/j.colsurfb.2022.112820.
  • Yang G, Wang Y, Li Y, et al. Synthesis of vitamin B1-Stabilized gold nanoclusters with high quantum yields for application as sensors[J]. ACS Appl Nano Mater. 2022;5(11):17234–17242. doi: 10.1021/acsanm.2c04289.
  • Gurbatov S, Puzikov V, Modin E, et al. Ag-Decorated Si microspheres produced by laser ablation in liquid: all-in-one temperature-feedback SERS-based platform for nanosensing [J]. Materials. 2022;15(22):8091. doi: 10.3390/ma15228091.
  • Anjali KG, Jibin KV, Aswathy PV, et al. An imidazole ligated zinc (II) transition metal complex as a “turn-off” fluorescent sensor for the selective and sensitive detection of brilliant blue FCF[J]. J Photochem Photobiol A. 2022;433:114134. doi: 10.1016/j.jphotochem.2022.114134.
  • Wang HB, Tao BB, Wu NN, et al. Glutathione-stabilized copper nanoclusters mediated-inner filter effect for sensitive and selective determination of p-nitrophenol and alkaline phosphatase activity [J]. Spectrochim Acta A Mol Biomol Spectrosc. 2022;271:120948. doi: 10.1016/j.saa.2022.120948.
  • Wang HB, Mao AL, Tao BB, et al. l-Histidine-DNA interaction: a strategy for the improvement of the fluorescence signal of poly(adenine) DNA-templated gold nanoclusters [J]. Mikrochim Acta. 2021;188(6):198. doi: 10.1007/s00604-021-04853-7.
  • Guan L, Chen GZ, Croft AK, et al. Perspective—redox ionic liquid electrolytes for supercapattery [J]. J Electrochem Soc. 2022;169(3):030529. doi: 10.1149/1945-7111/ac5ba8.
  • Wang HB, Tao BB, Mao AL, et al. Self-assembled copper nanoclusters structure-dependent fluorescent enhancement for sensitive determination of tetracyclines by the restriction intramolecular motion [J]. Sensors and Actuators: B Chemical. 2021;348:130729. doi: 10.1016/j.snb.2021.130729.
  • Sadak O. One-pot scalable synthesis of rGO/AuNPs nanocomposite and its application in enzymatic glucose biosensor. Nanocomposites. 2021;7(1):44–52. doi: 10.1080/20550324.2021.1917837.
  • Sbeah ZA, Adhikari R, Sorathiya V, et al. A review on metamaterial sensors based on active plasmonic materials. Plasmonics. 2023. doi: 10.1007/s11468-023-01904-y.
  • Singh H, Thakur B, Bhardwaj SK, et al. Nanomaterial-based fluorescent biosensors for the detection of antibiotics in foodstuffs: a review. Food Chem. 2023;426:136657. doi: 10.1016/j.foodchem.2023.136657.
  • Yau SH, Varnavski O, Goodson IT. An ultrafast look at Au nanoclusters. Acc Chem Res. 2013;46(7):1506–1516. doi: 10.1021/ar300280w.
  • Huang CC, Yang Z, Lee KH, et al. Synthesis of highly fluorescent gold nanoparticles for sensing mercury (II). Angew Chem. 2007;119(36):6948–6952. doi: 10.1002/ange.200700803.
  • Wu Z, Jin R. On the ligand’s role in the fluorescence of gold nanoclusters. Nano Lett. 2010;10(7):2568–2573. doi: 10.1021/nl101225f.
  • Zhou W, Gao X, Liu D, et al. Gold nanoparticles for in vitro diagnostics. Chem Rev. 2015;115(19):10575–10636. doi: 10.1021/acs.chemrev.5b00100.
  • Jin R, Zeng C, Zhou M, et al. Atomically precise colloidal metal nanoclusters and nanoparticles: fundamentals and opportunities. Chem Rev. 2016;116(18):10346–10413. doi: 10.1021/acs.chemrev.5b00703.
  • Xie J, Zheng Y, Ying JY. Protein-directed synthesis of highly fluorescent gold nanoclusters. J Am Chem Soc. 2009;131(3):888–889. doi: 10.1021/ja806804u.
  • Wen F, Dong Y, Feng L, et al. Horseradish peroxidase functionalized fluorescent gold nanoclusters for hydrogen peroxide sensing. Anal Chem. 2011;83(4):1193–1196. doi: 10.1021/ac1031447.
  • Bilecka I, Niederberger M. Microwave chemistry for inorganic nanomaterials synthesis. Nanoscale. 2010;2(8):1358–1374. doi: 10.1039/b9nr00377k.
  • Zhu YJ, Chen F. Microwave-assisted preparation of inorganic nanostructures in liquid phase. Chem Rev. 2014;114(12):6462–6555. doi: 10.1021/cr400366s.
  • Dallinger D, Kappe CO. Microwave-assisted synthesis in water as solvent. Chem Rev. 2007;107(6):2563–2591. doi: 10.1021/cr0509410.
  • Bühler G, Feldmann C. Microwave‐assisted synthesis of luminescent LaPO4: Ce, Tb nanocrystals in ionic liquids. Angew Chem Int Ed Engl. 2006;45(29):4864–4867. doi: 10.1002/anie.200600244.
  • Hu X, Yu JC, Gong J, et al. Fe2O3 nanorings prepared by a microwave‐assisted hydrothermal process and their sensing properties. Adv Mater. 2007;19(17):2324–2329. α‐ doi: 10.1002/adma.200602176.
  • Vargas-Hernandez C, Mariscal MM, Esparza R, et al. A synthesis route of gold nanoparticles without using a reducing agent. Appl Phys Lett. 2010;96(21):213115. doi: 10.1063/1.3442479.
  • Yue Y, Liu TY, Li HW, et al. Microwave-assisted synthesis of BSA-protected small gold nanoclusters and their fluorescence-enhanced sensing of silver (I) ions. Nanoscale. 2012;4(7):2251–2254. doi: 10.1039/c2nr12056a.
  • Yan L, Cai Y, Zheng B, et al. Microwave-assisted synthesis of BSA-stabilized and HSA-protected gold nanoclusters with red emission. J Mater Chem. 2012;22(3):1000–1005. doi: 10.1039/C1JM13457D.
  • Zhuang H, Jiang X, Wu S, et al. A novel polypeptide-modified fluorescent gold nanoclusters for copper ion detection. Sci Rep. 2022;12(1):6624. doi: 10.1038/s41598-022-10500-9.
  • He DF, Xiang Y, Wang X, et al. Microwave-heating synthesis and sensing applications of bright gold nanoclusters. Mater Res Bull. 2011;46(12):2418–2421. doi: 10.1016/j.materresbull.2011.08.048.
  • Betzig E. Single molecules, cells, and super‐resolution optics (nobel lecture). Angew Chem Int Ed Engl. 2015;54(28):8034–8053. doi: 10.1002/anie.201501003.
  • Tanaka A, Takeda Y, Nagasawa T, et al. Chemical states of dodecanethiolate-passivated Au nanoparticles: synchrotron-radiation photoelectron spectroscopy. Solid State Commun. 2003;126(4):191–196. doi: 10.1016/S0038-1098(03)00105-4.
  • Buffat PA, Flüeli M, Spycher R, et al. Crystallographic structure of small gold particles studied by high-resolution electron microscopy. Faraday Discuss. 1991;92:173–187. doi: 10.1039/FD9919200173.
  • Shang L, Yang L, Stockmar F, et al. Microwave-assisted rapid synthesis of luminescent gold nanoclusters for sensing Hg 2+ in living cells using fluorescence imaging. Nanoscale. 2012;4(14):4155–4160. doi: 10.1039/c2nr30219e.
  • Helmbrecht C, Lützenkirchen-Hecht D, Frank W. Microwave-assisted synthesis of water-soluble, fluorescent gold nanoclusters capped with small organic molecules and a revealing fluorescence and X-ray absorption study. Nanoscale. 2015;7(11):4978–4983. doi: 10.1039/c4nr07051h.
  • Zhang Y, Jiang H, Ge W, et al. Cytidine-directed rapid synthesis of water-soluble and highly yellow fluorescent bimetallic AuAg nanoclusters. Langmuir. 2014;30(36):10910–10917. doi: 10.1021/la5028702.
  • Xie J, Lee JY, Wang DIC, et al. Silver nanoplates: from biological to biomimetic synthesis. ACS Nano. 2007;1(5):429–439. doi: 10.1021/nn7000883.
  • Chang HY, Chang HT, Hung YL, et al. Ligand effect on the luminescence of gold nanodots and its application for detection of total mercury ions in biological samples. RSC Adv. 2013;3(14):4588–4597. doi: 10.1039/c3ra23036h.