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基于半胱氨酸功能化的交联吡啶二甲酸石英晶体微天平传感器用于汞离子的高选择性检测。

Highly selective sensor for the detection of Hg ions using homocysteine functionalised quartz crystal microbalance with cross-linked pyridinedicarboxylic acid.

机构信息

Electronics Engineering Department, Sardar Vallabhbhai National Institute of Technology, Surat, Gujarat, India.

Smart Sensors Area, CSIR-Central Electronics Engineering Research Institute, Pilani-333031, Rajasthan, India.

出版信息

IET Nanobiotechnol. 2020 Sep;14(7):563-573. doi: 10.1049/iet-nbt.2020.0109.

Abstract

This study reports an insightful portable vector network analyser (VNA)-based measurement technique for quick and selective detection of Hg ions in nanomolar (nM) range using homocysteine (HCys)-functionalised quartz-crystal-microbalance (QCM) with cross-linked-pyridinedicarboxylic acid (PDCA). The excessive exposure to mercury can cause damage to many human organs, such as the brain, lungs, stomach, and kidneys, etc. Hence, the authors have proposed a portable experimental platform capable of achieving the detection in 20-30 min with a limit of detection (LOD) 0.1 ppb (0.498 nM) and a better dynamic range (0.498 nM-6.74 mM), which perfectly describes its excellent performance over other reported techniques. The detection time for various laboratory-based techniques is generally 12-24 h. The proposed method used the benefits of thin-film, nanoparticles (NPs), and QCM-based technology to overcome the limitation of NPs-based technique and have LOD of 0.1 ppb (0.1 μg/l) for selective Hg ions detection which is many times less than the World Health Organization limit of 6 μg/l. The main advantage of the proposed QCM-based platform is its portability, excellent repeatability, millilitre sample volume requirement, and easy process flow, which makes it suitable as an early warning system for selective detection of mercury ions without any costly measuring instruments.

摘要

本研究报告了一种基于矢量网络分析仪(VNA)的灵敏、选择性检测纳摩尔(nM)级汞离子的新方法,该方法使用巯基乙胺(HCys)功能化的石英晶体微天平(QCM)和交联吡啶二甲酸(PDCA)。过量的汞暴露会对许多人体器官造成损害,如大脑、肺、胃和肾脏等。因此,作者提出了一种便携式实验平台,能够在 20-30 分钟内实现检测,检测限(LOD)为 0.1 ppb(0.498 nM),动态范围更好(0.498 nM-6.74 mM),优于其他报道的技术。各种基于实验室的技术的检测时间通常为 12-24 小时。该方法利用薄膜、纳米粒子(NPs)和基于 QCM 的技术的优势,克服了基于 NPs 技术的局限性,对 Hg 离子的选择性检测具有 0.1 ppb(0.1 μg/l)的检测限,比世界卫生组织规定的 6 μg/l 低得多。所提出的基于 QCM 的平台的主要优势是其便携性、出色的重复性、对毫升样品体积的要求以及简单的工艺流程,使其适合作为选择性检测汞离子的早期预警系统,而无需任何昂贵的测量仪器。

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