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基于 N-乙酰-L-半胱氨酸保护的金纳米簇与 N,S,P 共掺杂碳点之间的 FRET 体系,用于顺序测定 Cu(II)和 L-组氨酸的比率型和远红荧光“关-开”传感器。

A ratiometric and far-red fluorescence "off-on" sensor for sequential determination of copper(II) and L-histidine based on FRET system between N-acetyl-L-cysteine-capped AuNCs and N,S,P co-doped carbon dots.

机构信息

Institute of Environmental Science, and School of Chemistry and Chemical Engineering, Shanxi University, Taiyuan, 030006, People's Republic of China.

出版信息

Mikrochim Acta. 2020 Apr 28;187(5):299. doi: 10.1007/s00604-020-04242-6.

Abstract

A far-red fluorescence "off-on" sensing strategy is described for sequential ratiometric determination of Cu and L-histidine (L-His) based on fluorescence resonance energy transfer (FRET) system. N,S,P co-doped carbon dots (N,S,P-CDs) and N-acetyl-L-cysteine functionalized gold nanoclusters (NAC-AuNCs) are used in the FRET system, which serve as energy donor and acceptor, respectively. After adding NAC-AuNCs into the solution of N,S,P-CDs, the fluorescence of N,S,P-CDs is effectively quenched, while the far-red fluorescence of NAC-AuNCs appears. Cu can decrease fluorescence of NAC-AuNCs, and then L-His can effectively recover the fluorescence of NAC-AuNCs. The possible reason is that the stronger affinity between Cu and L-His can pull Cu away from the surface of NAC-AuNCs. Through it all, the emission intensity of N,S,P-CDs remains nearly constant, so the ratio of fluorescence intensities at 485 and 625 nm exhibits a linear correlation to the Cu and L-His concentration, respectively. The sensing platform shows good selectivity towards Cu and L-His with a linear range of 0.65-26.58 μM and 3.13-56.25 μM and determination limits of 0.50 μM and 0.374 μM, respectively. The proposed method has been successfully used for Cu and L-His determination in real samples with satisfying results. Graphical abstract.

摘要

一种远红荧光“开-关”传感策略被描述用于基于荧光共振能量转移(FRET)系统的 Cu 和 L-组氨酸(L-His)的顺序比法定量测定。N、S、P 共掺杂碳点(N、S、P-CDs)和 N-乙酰-L-半胱氨酸功能化金纳米簇(NAC-AuNCs)被用在 FRET 系统中,分别作为供体和受体。在将 NAC-AuNCs 加入到 N、S、P-CDs 的溶液中后,N、S、P-CDs 的荧光被有效猝灭,而 NAC-AuNCs 的远红荧光出现。Cu 可以降低 NAC-AuNCs 的荧光,然后 L-His 可以有效地恢复 NAC-AuNCs 的荧光。可能的原因是 Cu 和 L-His 之间更强的亲和力可以将 Cu 从 NAC-AuNCs 的表面拉下。通过这一切,N、S、P-CDs 的发射强度保持几乎不变,因此在 485nm 和 625nm 处的荧光强度比值分别与 Cu 和 L-His 的浓度呈线性相关。该传感平台对 Cu 和 L-His 具有良好的选择性,线性范围分别为 0.65-26.58 μM 和 3.13-56.25 μM,检测限分别为 0.50 μM 和 0.374 μM。该方法已成功用于实际样品中 Cu 和 L-His 的测定,结果令人满意。

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