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电纺纳米纤维负载生物超声合成金纳米粒子作为汞(II)检测体系中基于汞合金的超灵敏探针。

Electrospun nanofibers decorated with bio-sonochemically synthesized gold nanoparticles as an ultrasensitive probe in amalgam-based mercury (II) detection system.

机构信息

Young Researchers and Elite Club, Bushehr Branch, Islamic Azad University, Bushehr, Iran.

出版信息

Ultrason Sonochem. 2018 Jun;44:24-35. doi: 10.1016/j.ultsonch.2018.02.005. Epub 2018 Feb 6.

DOI:10.1016/j.ultsonch.2018.02.005
PMID:29680608
Abstract

In this study, bio-ultrasound-assisted synthesized gold nanoparticles using Gracilaria canaliculata algae have been immobilized on a polymeric support and used as a glassy probe chemosensor for detection and rapid removal of Hg ions. The function of the suggested chemosensor has been explained based on gold-amalgam formation and its catalytic role on the reaction of sodium borohydride and rhodamine B (RhB) with fluorescent and colorimetric sensing function. The catalyzed reduction of RhB by the gold amalgam led to a distinguished color change from red and yellow florescence to colorless by converting the amount of Hg deposited on Au-NPs. The detection limit of the colorimetric and fluorescence assays for Hg was 2.21 nM and 1.10 nM respectively. By exposing the mentioned colorless solution to air for at least 2 h, unexpectedly it was observed that the color and fluorescence of RhB were restored. Have the benefit of the above phenomenon a recyclable and portable glass-based sensor has been provided by immobilizing the Au-NPs and RB on the glass slide using electrospinning. Moreover, the introduced combinatorial membrane has facilitated the detection and removal of Hg ions in various Hg (II)-contaminated real water samples with efficiency of up to 99%.

摘要

在这项研究中,使用龙须菜海藻通过生物超声辅助合成了金纳米粒子,并将其固定在聚合物载体上,用作玻璃状探针化学传感器,用于检测和快速去除汞离子。根据金汞齐的形成及其在硼氢化钠和罗丹明 B(RhB)与荧光和比色传感功能反应中的催化作用,解释了所提出的化学传感器的功能。金汞齐催化还原 RhB 导致颜色从红色和黄色荧光变化为无色,这是由于 Au-NPs 上沉积的 Hg 量发生了变化。比色和荧光测定法对 Hg 的检测限分别为 2.21 nM 和 1.10 nM。将上述无色溶液暴露在空气中至少 2 小时后,出人意料地观察到 RhB 的颜色和荧光得到了恢复。利用上述现象,通过使用静电纺丝将 Au-NPs 和 RB 固定在玻璃载玻片上,提供了一种可重复使用和便携式的基于玻璃的传感器。此外,所引入的组合膜促进了各种含 Hg(II)的实际水样中 Hg 离子的检测和去除,效率高达 99%。

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