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Article Dans Une Revue Microchimica Acta Année : 2023

Photoluminescent gold nanoclusters as two-photon excited ratiometric pH sensor and photoactivated peroxidase

Résumé

A two-photon excited ratiometric fluorescent pH sensor is reported by combining L-cysteine-protected AuNCs (Cys@AuNCs) with fluorescein isothiocyanate (FITC). Cys@AuNCs were synthesized through a one-step self-reduction route and showed pH-responsive photoluminescence at 650 nm. Benefiting from the opposite pH response of Cys@AuNCs and FITC, the fluorescence ratio (F-515 nm/F-650 nm) of FITC&Cys@AuNCs provided a large dynamic range of 200-fold for pH measurement in the response interval of pH 5.0-8.0. Based on the excellent two-photon absorption coefficient of Cys@AuNCs, the sensor was expected to achieve sensitive quantitation of pH in living cells under two-photon excitation. In addition, colorimetric biosensing based on enzyme-like metal nanoclusters has attracted wide attention due to their low-cost, simplicity, and practicality. It is crucial to develop high catalytic activity nanozyme from the viewpoint of practical application. The synthesized Cys@AuNCs exhibited excellent photoactivated peroxidase-like activity with high substrate affinity and catalytic reaction rate, promising for rapid colorimetric biosensing of field analysis and the control of catalytic reactions by photostimulation.
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Dates et versions

hal-04140719 , version 1 (20-10-2023)

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Yuchi Cheng, Huangmei Zhou, Jinming Xu, Yu Zhao, Xihang Chen, et al.. Photoluminescent gold nanoclusters as two-photon excited ratiometric pH sensor and photoactivated peroxidase. Microchimica Acta, 2023, 190 (6), pp.225. ⟨10.1007/s00604-023-05803-1⟩. ⟨hal-04140719⟩
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