首页> 美国卫生研究院文献>Beilstein Journal of Nanotechnology >Ultrasensitive detection of cadmium ions using a microcantilever-based piezoresistive sensor for groundwater
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Ultrasensitive detection of cadmium ions using a microcantilever-based piezoresistive sensor for groundwater

机译:使用基于微阳极镜的压阻传感器进行地下水的超细静脉离子检测

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摘要

This paper proposes the selective and ultrasensitive detection of Cd(II) ions using a cysteamine-functionalized microcantilever-based sensor with cross-linked ᴅʟ-glyceraldehyde (DL-GC). The detection time for various laboratory-based techniques is generally 12–24 hours. The experiments were performed to create self-assembled monolayers (SAMs) of cysteamine cross-linked with ᴅʟ-glyceraldehyde on the microcantilever surface to selectively capture the targeted Cd(II). The proposed portable microfluidic platform is able to achieve the detection in 20–23 min with a limit of detection (LOD) of 0.56 ng (2.78 pM), which perfectly describes its excellent performance over other reported techniques. Many researchers used nanoparticle-based sensors for the detection of heavy metal ions, but daily increasing usage and commercialization of nanoparticles are rapidly expanding their deleterious effect on human health and the environment. The proposed technique uses a blend of thin-film and microcantilever (micro-electromechanical systems) technology, which mitigate the disadvantages of the nanoparticle approaches, for the selective detection of Cd(II) with a LOD below the WHO limit of 3 μg/L.
机译:本文提出了使用具有交联甲 - 甘油醛(DL-GC)的半胱胺官能化的基于半胱胺官能化的基于半胱胺官能化的微囊化传感器的CD(II)离子的选择性和超声检测。各种基于实验室技术的检测时间通常为12-24小时。进行实验以创造与微阵列表面上与β-甘油醛交联的半胱胺的自组装单层(SAMS),以选择性地捕获靶向CD(II)。所提出的便携式微流体平台能够在20-23分钟内实现检测,其中检测(LOD)为0.56 ng(2.78 pm),完美地描述了其优异的对其他报告技术的性能。许多研究人员使用基于纳米粒子的传感器用于检测重金属离子,但纳米颗粒的日常使用和商业化正在迅速扩大对人类健康和环境的有害影响。所提出的技术使用薄膜和微电机(微机电系统)技术的混合物,这减轻了纳米粒子方法的缺点,用于选择性检测CD(II)的洛氏腰部限制为3μg/ L. 。

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