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基于荧光共振能量转移(FRET)的比率检测体系,用于水中汞离子的检测,聚合物颗粒作为支架。

FRET-based ratiometric detection system for mercury ions in water with polymeric particles as scaffolds.

机构信息

College of Materials Science & Engineering, South China University of Technology, Guangzhou, China.

出版信息

J Phys Chem B. 2011 Feb 10;115(5):874-82. doi: 10.1021/jp109594h. Epub 2011 Jan 20.

Abstract

Mercury pollution is a global problem, and the development of stable and sensitive fluorescent probes for mercury ions in the water phase has long been sought. In this work, a novel fluorescence resonance energy transfer (FRET)-based ratiometric sensor for detecting Hg(2+) in pure water was demonstrated. Polymeric nanoparticles prepared by miniemulsion polymerization of methyl methacrylate and acrylic acid were used as the scaffold for the FRET-based sensor. A hydrophobic fluorescent dye nitrobenzoxadiazolyl derivative (NBD) was embedded in the nanoparticles during the polymerization and used as the donor. A spirolactam rhodamine derivative SRHB-NH(2) was synthesized and then covalently linked onto the particle surface and used as an ion recognition element. The presence of Hg(2+) in the water dispersion of nanoparticles induced the ring-opening reaction of the spirolactam rhodamine moieties and led to the occurrence of the FRET process, affording the nanoparticle system a ratiometric sensor for Hg(2+). The nanoparticle sensor can selectively detect the Hg(2+) in water with the detection limit of 100 nM (ca. 20 ppb). It has been found that the FRET-based system with smaller nanoparticles as the scaffold exhibited higher energy transfer efficiency and was more preferred for the accurate ratiometric detection. Moreover, the FRET-based sensor was applicable in a relatively wide pH range (pH 4-8) in water; thus, this approach may provide a new strategy for ratiometric detection of analytes in environmental and biological applications.

摘要

汞污染是一个全球性的问题,长期以来,人们一直致力于开发用于水相汞离子的稳定且灵敏的荧光探针。在这项工作中,展示了一种用于检测纯水中 Hg(2+)的新型荧光共振能量转移(FRET)比率型传感器。通过甲基丙烯酸甲酯和丙烯酸的 miniemulsion 聚合制备的聚合物纳米粒子被用作基于 FRET 的传感器的支架。疏水性荧光染料硝酮基衍生物(NBD)在聚合过程中嵌入纳米粒子中,并用作供体。合成了螺环酰胺罗丹明衍生物 SRHB-NH(2),然后将其共价连接到颗粒表面上,并用作离子识别元件。纳米粒子水分散体中 Hg(2+)的存在诱导螺环酰胺罗丹明部分的开环反应,并导致 FRET 过程发生,从而为纳米粒子系统提供了用于 Hg(2+)的比率型传感器。该纳米粒子传感器可以选择性地检测水中的 Hg(2+),检测限为 100 nM(约 20 ppb)。研究发现,作为支架的较小纳米粒子的基于 FRET 的系统表现出更高的能量转移效率,更有利于准确的比率检测。此外,基于 FRET 的传感器在水相的较宽 pH 范围内(pH 4-8)是适用的;因此,这种方法可能为环境和生物应用中分析物的比率检测提供新的策略。

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