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膦酸酯取代的钌(II)联吡啶衍生物作为光电化学探针用于生物流体中汞(II)的灵敏和选择性检测。

Phosphonate-Substituted Ruthenium(II) Bipyridyl Derivative as a Photoelectrochemical Probe for Sensitive and Selective Detection of Mercury(II) in Biofluids.

机构信息

School of Chemistry , Dalian University of Technology , Dalian 116023 , People's Republic of China.

出版信息

Anal Chem. 2018 Dec 18;90(24):14423-14432. doi: 10.1021/acs.analchem.8b03985. Epub 2018 Nov 30.

Abstract

A ruthenium(II) bipyridyl derivative photoelectrochemical probe, Ru-1, is synthesized and coupled with TiO nanoparticles (Ru-1/TiO) for the specific recognition and highly sensitive photoelectrochemical (PEC) detection of Hg in a series of biofluids. The probe is designed with a chromophore, a thiocyanate recognition unit, a π-conjugated photoelectron-transfer pathway, and a phosphonate anchor. TiO nanoparticles with strong affinity to phosphonate and suitable conduction band energy are used as intermediate layers to increase the Ru-1 adsorption amount and amplify the photocurrent response. Under irradiation, the Ru-1/TiO/fluorine-doped tin oxide (FTO), with strong visible light-harvesting capacity, aqueous stability, and efficient photoelectron transfer, shows a high and stable photocurrent response. In the presence of Hg, however, the specific Hg and NCS coordination changes the photophysical properties of Ru-1, imposing the probe with a wider band gap, a weaker absorbance, and a poorer photoelectron and hole separation efficiency, thus resulting in a significant photocurrent decrease. On the basis of the Hg-induced photocurrent change, the Ru-1/TiO/FTO shows good selectivity and high sensitivity toward the PEC detection of Hg, with wide linear ranges from 10 to 10 and 10 to 10 g/mL, and a low limit of detection of 0.63 pg/mL. The PEC probe is recyclable and accurate for selective detection of Hg in urine, serum, and cell extracts. The whole analysis can be completed within 15 min. These good analytical performances indicate that the PEC method might have great potential for the onsite detection of small molecules in biosystems.

摘要

一种钌(II)联吡啶衍生物光电化学探针 Ru-1 被合成,并与 TiO 纳米粒子(Ru-1/TiO)耦合,用于一系列生物流体中 Hg 的特异性识别和高灵敏度光电化学(PEC)检测。该探针设计有发色团、硫氰酸根识别单元、π 共轭光电导途径和膦酸酯锚。TiO 纳米粒子具有与膦酸酯强亲和力和合适的导带能量,用作中间层以增加 Ru-1 的吸附量并放大光电流响应。在照射下,具有强可见光捕获能力、水稳定性和高效光电子转移的 Ru-1/TiO/掺氟氧化锡(FTO)表现出高且稳定的光电流响应。然而,在存在 Hg 的情况下,特定的 Hg 和 NCS 配位改变了 Ru-1 的光物理性质,使探针具有更宽的带隙、较弱的吸光度以及较差的光电子和空穴分离效率,从而导致光电流显著降低。基于 Hg 引起的光电流变化,Ru-1/TiO/FTO 对 Hg 的 PEC 检测表现出良好的选择性和高灵敏度,线性范围从 10 到 10 和 10 到 10 g/mL,检测限低至 0.63 pg/mL。PEC 探针可回收且可准确选择性地检测尿液、血清和细胞提取物中的 Hg。整个分析可在 15 分钟内完成。这些良好的分析性能表明,PEC 方法在生物体系中小分子的现场检测中可能具有很大的潜力。

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