首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >A novel direct and cost effective method for fabricating paper-based microfluidic device by commercial eye pencil and its application for determining simultaneous calcium and magnesium
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A novel direct and cost effective method for fabricating paper-based microfluidic device by commercial eye pencil and its application for determining simultaneous calcium and magnesium

机译:商用眼铅笔制造纸型微流体装置的一种新型直接且成本有效的方法及其在确定同时钙和镁的应用

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摘要

This article presents a novel, simple and low-cost method for the fabrication of microfluidic paper using sticker templates with specific patterns and a highly accessible waterproof eye pencil. The entire fabrication process could be finished in 10 min by heating the patterned paper at 150 degrees without using complicated instruments. Important parameters in the fabrication of microfluidic paper such as type of paper, heating time, melting temperature, reagent and sample volume were optimized. To verify the applicability of the fabricated microfluidic paper, colorimetric assays were performed for simultaneous analysis of calcium and magnesium by single and multiple indicators and water hardness was determined. The limit of detection is 8.3 mg L-1 and 1.0 mg L-1, and the relative standard deviation is 83% and 5.9% for calcium and magnesium, respectively. A linear range from 10 to 100 mg L-1 for calcium and two linear ranges of 4-20 mg L-1 and 20-100 mg L-1 for magnesium were obtained in the paper based microfluidic device. The concentration of calcium and magnesium were successfully determined in tap, river, mineral and household purifier water samples. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文介绍了使用具有特定图案的贴纸模板和高度可触及的防水眼铅笔制造微流体纸的新颖,简单而低成本的方法。通过在150度下加热图案的纸张,可以在10分钟内完成整个制造过程,而不使用复杂的仪器。优化了微流体纸种如纸张,加热时间,熔化温度,试剂和样品体积的微流体纸的重要参数。为了验证制造的微流体纸的适用性,进行比色测定进行单一的钙和镁的同时分析,测定多个指示剂和水硬度。检测限为8.3mg L-1和1.0mg L-1,相对标准偏差分别为钙和镁的83%和5.9%。在纸的微流体装置中获得了钙的10至100mg L-1的线性范围和用于镁的两个线性范围和20-100mg L-1。在水龙头,河流,矿物和家用净化器水样中成功地确定了钙和镁的浓度。 (c)2017 Elsevier B.v.保留所有权利。

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