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一种基于“Turn-On”硫醇功能化荧光碳量子点的化学传感体系用于检测亚砷酸盐。

A "Turn-On" thiol functionalized fluorescent carbon quantum dot based chemosensory system for arsenite detection.

机构信息

Academy of Scientific and Innovative Research (AcSIR), Council of Scientific and Industrial Research, New Delhi, India; Central Scientific Instruments Organisation, Sectro-30 C, Chandigarh 160030, India.

Central Scientific Instruments Organisation, Sectro-30 C, Chandigarh 160030, India.

出版信息

J Hazard Mater. 2017 Apr 15;328:117-126. doi: 10.1016/j.jhazmat.2017.01.015. Epub 2017 Jan 12.

DOI:10.1016/j.jhazmat.2017.01.015
PMID:28103487
Abstract

Carbon quantum dots (CQDs) have emerged out as promising fluorescent probes for hazardous heavy metals detection in recent past. In this study, water soluble CQDs were synthesized by facile microwave pyrolysis of citric acid & cysteamine, and functionalized with ditheritheritol to impart thiol functionalities at surface for selective detection of toxic arsenite in water. Microscopic analysis reveals that the synthesized CQDs are of uniform size (diameter ∼5nm) and confirmed to have surface SH groups by FT-IR. The functionalized probe is then demonstrated for arsenite detection in water by "Turn-On" read out mechanism, which reduces the possibility of false positive signals associated with "turn off' probes reported earlier. The blue luminescent functionalized CQDs exhibit increase in fluorescence intensity on arsenite addition in 5-100ppb wide detection range. The probe can be used for sensitive detection of arsenite in environmental water to a theoretical detection limit (3s) of 0.086ppb (R=0.9547) with good reproducibility at 2.6% relative standard deviation. The presented reliable, sensitive, rapid fCQDs probe demonstrated to exhibit high selectivity towards arsenite and exemplified for real water samples as well. The analytical performance of the presented probe is comparable to existing organic & semiconductor based optical probes.

摘要

在过去的几年中,碳量子点(CQDs)已成为检测危险重金属的有前途的荧光探针。在这项研究中,通过柠檬酸和半胱氨酸的简便微波热解合成了水溶性 CQDs,并通过二硫苏糖醇功能化在表面赋予巯基官能团,用于选择性检测水中的有毒亚砷酸盐。微观分析表明,合成的 CQDs 具有均匀的尺寸(直径约为 5nm),并通过 FT-IR 证实具有表面 SH 基团。然后,通过“开启”读出机制证明功能化探针可用于水中的亚砷酸盐检测,这降低了与早期报道的“关闭”探针相关的假阳性信号的可能性。蓝色发光功能化 CQDs 在加入亚砷酸盐时荧光强度增加,检测范围为 5-100ppb。该探针可用于环境水中亚砷酸盐的灵敏检测,理论检测限(3s)为 0.086ppb(R=0.9547),在 2.6%相对标准偏差下具有良好的重现性。所提出的可靠、灵敏、快速的 fCQDs 探针对亚砷酸盐表现出高选择性,并可用于实际水样。该探针的分析性能与现有的有机和半导体基光学探针相当。

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