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用于高灵敏度检测铜离子的生物相容性硫化银量子点

Biocompatible AgS quantum dots for highly sensitive detection of copper ions.

作者信息

Jiang Peng, Li Shulan, Han Minlu, Liu Yi, Chen Zilin

机构信息

Key Laboratory of Combinatorial Biosynthesis and Drug Discovery (Wuhan University), Ministry of Education, and Wuhan University School of Pharmaceutical Sciences, Wuhan 430071, China.

出版信息

Analyst. 2019 Apr 8;144(8):2604-2610. doi: 10.1039/c9an00096h.

Abstract

A simple aqueous approach for synthesizing biocompatible red and near-infrared (NIR) emitting Ag2S quantum dots (QDs) at low temperature without a required oxygen-free process has been developed. The fluorescence of the obtained red emitting Ag2S QDs could be selectively quenched by Cu2+. Based on this, a novel Ag2S QD based fluorescent sensor for highly selective and sensitive detection of Cu2+ was developed. This method showed a low limit of detection (LOD) of 27.6 nM for Cu2+ sensing in a wide linear range concentration of 25 nM-10 μM. The quenching mechanism was discussed by the time-resolved photoluminescence, absorption spectra, TEM and energy-dispersive X-ray (EDX) results. Cation exchange of Ag2S QDs between Cu(ii) and Ag(i), and dynamic quenching due to excited state electron transfer from Ag2S QDs to Cu2+ were considered to be the quenching mechanism. Furthermore, to understand the interaction between Ag2S QDs and Cu2+, the thermodynamic process was investigated by means of isothermal titration calorimetry (ITC). The values of ΔH, ΔS and ΔG were calculated from the ITC results to be -79.43 kJ mol-1, -142.18 J K-1 mol-1 and -37.06 kJ mol-1, respectively. The Ag2S QD based Cu2+ detection had advantages of nontoxicity, fast response, high sensitivity and selectivity, wide linear range and easy preparation.

摘要

已开发出一种简单的水相方法,用于在低温下合成具有生物相容性的红色和近红外(NIR)发射的硫化银量子点(QDs),且无需无氧过程。所获得的红色发射硫化银量子点的荧光可被Cu2+选择性猝灭。基于此,开发了一种新型的基于硫化银量子点的荧光传感器,用于高选择性和灵敏地检测Cu2+。该方法在25 nM至10 μM的宽线性浓度范围内对Cu2+传感的检测限低至27.6 nM。通过时间分辨光致发光、吸收光谱、透射电子显微镜(TEM)和能量色散X射线(EDX)结果讨论了猝灭机制。认为硫化银量子点在Cu(ii)和Ag(i)之间的阳离子交换以及由于激发态电子从硫化银量子点转移到Cu2+引起的动态猝灭是猝灭机制。此外,为了了解硫化银量子点与Cu2+之间的相互作用,通过等温滴定量热法(ITC)研究了热力学过程。根据ITC结果计算出的ΔH、ΔS和ΔG值分别为-79.43 kJ mol-1、-142.18 J K-1 mol-1和-37.06 kJ mol-1。基于硫化银量子点的Cu2+检测具有无毒、响应快、灵敏度和选择性高、线性范围宽以及制备容易等优点。

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