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一种基于金属-有机框架@碳量子点的新型混合荧光探针传感器,用于高选择性检测 6-巯基嘌呤。

A novel hybrid fluorescence probe sensor based on metal-organic framework@carbon quantum dots for the highly selective detection of 6-mercaptopurine.

机构信息

Research Laboratory of Spectrometry & Micro and Nano Extraction, Department of Chemistry, Iran University of Science and Technology, Tehran 16846-13114, Iran.

出版信息

Anal Methods. 2020 Nov 28;12(44):5397-5406. doi: 10.1039/d0ay01592j. Epub 2020 Oct 30.

DOI:10.1039/d0ay01592j
PMID:33125019
Abstract

In the present study, MIL-101(Fe) and amine-carbon quantum dots (CQDs) were combined via a post-synthetic modification (PSM) method; thus, a novel MIL-101(Fe)@amine-CQD hybrid fluorescent probe sensor for the detection of 6-mercaptopurine (6-MP) was synthesized. Amine-CQDs as a fluorescent material can convert the bonding interaction between MIL-101(Fe) and 6-MP into recognizable fluorescence signals, and MIL-101 (Fe) as an adsorbent can pre-concentrate 6-MP. Hereupon, this new sensor demonstrates high selectivity and sensitivity towards the detection of 6-MP. The addition of 6-MP to this probe quenches the fluorescence signal at 599 nm. In this study, factors such as pH, response time, and concentration of MIL-101(Fe)@amine-CQDs were optimized by the one-factor-at-a-time (OFAT) method. Under optimal conditions, the relationship between the fluorescence enhancement factor and the concentration of 6-MP for this sensor in the range of 0.1667-1.0000 μg L was linear (R = 0.9977, n = 3). The limit of detection and limit of quantitation were 55.70 ng L and 202.06 ng L, respectively, which are better than similar techniques. The repeatability of intra-day and inter-day was 2.4% and 4.7%, respectively. This fluorescent sensor was employed to determine 6-MP in real samples and exhibited acceptable results.

摘要

在本研究中,通过后合成修饰(PSM)方法将 MIL-101(Fe) 和胺基碳量子点(CQDs)结合在一起;因此,合成了一种用于检测 6-巯基嘌呤(6-MP)的新型 MIL-101(Fe)@胺基-CQD 杂化荧光探针传感器。胺基-CQDs 作为荧光材料可以将 MIL-101(Fe) 和 6-MP 之间的键合相互作用转化为可识别的荧光信号,而 MIL-101(Fe) 作为吸附剂可以预浓缩 6-MP。因此,这种新传感器对 6-MP 的检测具有高选择性和灵敏度。向探针中加入 6-MP 会猝灭 599nm 的荧光信号。在本研究中,通过单因素实验(OFAT)方法优化了 pH、响应时间和 MIL-101(Fe)@胺基-CQDs 浓度等因素。在最佳条件下,该传感器在 0.1667-1.0000μg L 范围内荧光增强因子与 6-MP 浓度之间的关系呈线性(R = 0.9977,n = 3)。该传感器的检测限和定量限分别为 55.70ng L 和 202.06ng L,优于类似技术。日内和日间重复性分别为 2.4%和 4.7%。该荧光传感器用于测定真实样品中的 6-MP,结果令人满意。

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