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双发射金属有机骨架作为荧光比率型传感器用于检测次氯酸根和抗坏血酸。

Dual-Emissive Metal-Organic Framework as a Fluorescent "Switch" for Ratiometric Sensing of Hypochlorite and Ascorbic Acid.

机构信息

Department of Applied Chemistry, College of Life Sciences , Fujian Agriculture and Forestry University , Fuzhou , Fujian 350002 , People's Republic of China.

State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter , Chinese Academy of Sciences , Fuzhou 350002 , People's Republic of China.

出版信息

Inorg Chem. 2019 Oct 7;58(19):13360-13369. doi: 10.1021/acs.inorgchem.9b02251. Epub 2019 Sep 10.

Abstract

The detection of hypochlorite (ClO) content in tap water is extremely important because excess amounts of hypochlorite can convert into highly toxic species and inadequate amounts of hypochlorite cannot fully kill bacteria and viruses. Although several metal-organic frameworks (MOFs) have been successfully employed as fluorescent sensors for hypochlorite detection, all these sensors are based on single emission that responds to the dose of hypochlorite. Ratiometric sensors are highly desirable, which can improve the sensitivity, accuracy, and reliability via self-calibration. Herein, a nanoscale dual-emission multivariate 5-5-Eu/BPyDC@MOF-253-NH was synthesized by sequential mixed-ligand self-assembly and postsynthesis method. Among the two emission bands of 5-5-Eu/BPyDC@MOF-253-NH, the strong blue emitting derived from ligands is sensitive to hypochlorite, while the red emitting derived from Eu(III) almost keeps invariable. Therefore, 5-5-Eu/BPyDC@MOF-253-NH was exploited as a fluorescent ratiometric nanosensor for "on-off" sensing of hypochlorite. Notably, the proposed sensing system showed an excellent performance including fast response (within 15 s), relative high specificity, wide linear range (0.1-30 μM), and low detection limit (0.094 μM). Besides, the suppressed blue emitting was recovered after the addition of ascorbic acid (AA) that consumes ClO via the redox reaction. Therefore, 5-5-Eu/BPyDC@MOF-253-NH was further employed as a fluorescent ratiometric nanosensor for the "on-off-on" sensing of AA. This work represents the first MOF-based fluorescent "switch" for the ratiometric sensing of hypochlorite and the second for ratiometric sensing of AA.

摘要

自来水中次氯酸盐(ClO)含量的检测非常重要,因为过量的次氯酸盐会转化为剧毒物质,而不足量的次氯酸盐则无法完全杀死细菌和病毒。尽管已经有几种金属-有机骨架(MOF)被成功地用作次氯酸盐检测的荧光传感器,但所有这些传感器都是基于单一发射,响应次氯酸盐的剂量。比率型传感器是非常理想的,它可以通过自校准来提高灵敏度、准确性和可靠性。在此,通过顺序混合配体自组装和后合成方法合成了纳米级双发射多元 5-5-Eu/BPyDC@MOF-253-NH。在 5-5-Eu/BPyDC@MOF-253-NH 的两个发射带中,源于配体的强蓝色发射对次氯酸盐敏感,而源于 Eu(III)的红色发射几乎保持不变。因此,5-5-Eu/BPyDC@MOF-253-NH 被用作荧光比率型纳米传感器,用于次氯酸盐的“开-关”传感。值得注意的是,该传感系统表现出出色的性能,包括快速响应(在 15 s 内)、相对高的特异性、宽线性范围(0.1-30 μM)和低检测限(0.094 μM)。此外,在添加通过氧化还原反应消耗 ClO 的抗坏血酸(AA)后,抑制的蓝色发射得到恢复。因此,5-5-Eu/BPyDC@MOF-253-NH 进一步被用作荧光比率型纳米传感器,用于 AA 的“开-关-开”传感。这项工作代表了第一个基于 MOF 的荧光“开关”,用于次氯酸盐的比率型传感,以及第二个用于 AA 的比率型传感。

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