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Fabrication of a Dipole-assisted Solid Phase Extraction Microchip for Trace Metal Analysis in Water Samples

机译:用于水样中痕量金属分析的偶极辅助固相萃取微芯片的制备

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摘要

This paper describes a fabrication protocol for a dipole-assisted solid phase extraction (SPE) microchip available for trace metal analysis in water samples. A brief overview of the evolution of chip-based SPE techniques is provided. This is followed by an introduction to specific polymeric materials and their role in SPE. To develop an innovative dipole-assisted SPE technique, a chlorine (Cl)-containing SPE functionality was implanted into a poly(methyl methacrylate) (PMMA) microchip. Herein, diverse analytical techniques including contact angle analysis, Raman spectroscopic analysis, and laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS) analysis were employed to validate the utility of the implantation protocol of the C-Cl moieties on the PMMA. The analytical results of the X-ray absorption near-edge structure (XANES) analysis also demonstrated the feasibility of the Cl-containing PMMA used as an extraction medium by virtue of the dipole-ion interactions between the highly electronegative C-Cl moieties and the positively charged metal ions.
机译:本文介绍了一种偶极辅助固相萃取(SPE)微芯片的制造协议,该芯片可用于水样品中的痕量金属分析。简要概述了基于芯片的SPE技术的发展。接下来是对特定聚合材料及其在SPE中的作用的介绍。为了开发创新的偶极辅助SPE技术,将含氯(Cl)的SPE功能注入到聚甲基丙烯酸甲酯(PMMA)微芯片中。在本文中,采用多种分析技术,包括接触角分析,拉曼光谱分析和激光烧蚀-电感耦合等离子体质谱(LA-ICP-MS)分析,以验证C-Cl部分在C上的注入方案的实用性。亚克力。 X射线吸收近边缘结构(XANES)分析的分析结果也证明了含氯的PMMA用作萃取介质的可行性,这是由于高电负性C-Cl部分与C-Cl部分之间的偶极离子相互作用所致。带正电的金属离子。

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