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首页> 外文期刊>Analytica chimica acta >High-throughput deposition of chemical reagents via pen-plotting technique for microfluidic paper-based analytical devices
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High-throughput deposition of chemical reagents via pen-plotting technique for microfluidic paper-based analytical devices

机译:通过对基于微流体纸分析装置的笔积绘制技术的化学试剂的高通量沉积

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The deposition of chemical reagent inks on paper is a crucial step in the development and fabrication of microfluidic paper-based analytical devices (mu PADs). A pen-plotting approach, delivering chemical ink deposition using technical pens filled with reagents and inserted into a desktop electronic plotter, is shown herein to be a versatile, low-cost, simple, rapid, reproducible, and high-throughput solution. The volume of the deposited ink was quantified gravimetrically, confirming that nanoliter volumes of reagents can be deposited reproducibly (e.g. 7.55 +/- 0.37 nL/mm for a plotting speed of 10 cm/s) in detection zones of mu PADs, typically spatially defined using wax printing. This approach was further investigated with regard to deposition of reagents in different geometrical forms (circular and linear), so demonstrating its applicability for preparation of mu PADs with flexible design and application. By adjusting the plotting speed for linear deposition, lines with a relatively large range of widths (approximate to 628-1192 mm) were created. Circular deposition was also demonstrated via delivery of reagents within wax printed circular fluidic barriers of a range of diameters (inner diameter = 1.5-7 mm). These capabilities were practically demonstrated via the fabrication of mu PADs, based upon differing detection principles for determination of aluminum in natural waters using Morin as the fluorescent reagent. Traditional mu PADs based on digital image colorimetry (DIC) were produced using circular deposition, whilst distance-based mu PADs exploited linear deposition. Both types of mu PADs developed using this method showed excellent precision for determination of trace concentrations of aluminium (average RSDs = 3.38% and 6.45%, and LODs = 0.5 ng (0.25 ppm) and 2 ng (0.5 ppm), for traditional and distance-based detection, respectively). (c) 2018 The Authors. Published by Elsevier B.V.
机译:在纸上的化学试剂墨水的沉积是微流体纸的分析装置(MU PADS)的开发和制造的关键步骤。使用填充有试剂并插入台式电子绘图仪的技术笔来提供化学墨水沉积的笔绘图方法,如本文所示是多功能,低成本,简单,快速,可重复的和高通量解决方案。沉积油墨的体积是重量的,证实可以在MU垫的检测区域中可重复地(例如7.55 +/- 0.37nl / mm)可重复沉积纳米潮凝胶体积的试剂(例如,用于10cm / s的绘图速度),通常是空间定义的使用蜡印刷。在不同几何形式(圆形和线性)沉积试剂的沉积进一步研究了这种方法,因此证明了其具有柔性设计和应用的MU垫的适用性。通过调节线性沉积的绘图速度,产生具有相对大范围的线(近似为628-1192mm)。还通过在直径范围(内径= 1.5-7mm)的蜡印刷的圆形流体屏障内的试剂来证明圆形沉积。基于不同的检测原理,实际通过制造MU垫进行这些能力,用于使用Morin作为荧光试剂测定天然水中铝的铝。使用圆形沉积产生基于数字图像比色法(DIC)的传统MU焊盘,距离的距离基于线性沉积。使用该方法开发的两种类型的MU垫表明,用于测定痕量铝的痕量精度(平均RSDS = 3.38%和6.45%,而LOD = 0.5ng(0.25ppm)和2ng(0.5ppm),用于传统和距离 - 基于检测)。 (c)2018作者。 elsevier b.v出版。

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