Development of Microfluidic Paper-Based Analytical Devices (µPADs) for Determination of Cd2+, Pb2+, and Cu2+ Ions in Mineral Water

Andri Hermansyah, Neil V. Rees, J. Gunlazuardi, Rahmat Wibowo
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Abstract

Microfluidic paper-based analytical devices (µPADs) have been successfully developed using dual detection: electrochemical and colorimetric systems. The µPADs have the potential to be used as Pb(II), Cd(II), and Cu(II) sensors to test the quality of water. The fabrication process uses hot embossing and screen-printing methods. The working electrode in the electrochemical zone was enhanced by the bismuth metal deposition process, while in the colorimetric zone, the gold nanoparticles modified with thioctic acid and dansylhydrazine (TA-Au-DNS) were used as a colorimetric sensor to detect Cu. The basic material of µPADs was characterized using a Fourier-transform infrared (FTIR) and a contact angle meter (CAM). In the electrochemical zone, the signals of square wave anodic stripping voltammetry (SWASV) resulted in good detection of Pb(II) and Cd(II) (from 0 to 100 ppb) with a limit of detection of 1.588 and 1.42 ppb, respectively. In the colorimetric zone, the performance of TA-Au-DNS for detecting Cu metal was obtained from readings through the red-green-blue (RGB) sensor as a miniature of µPADs reader. The LOD, LOQ, and average Vx0 (linearity values) in the detection of Cu(II) (from 58 to 100 ppb) are 8.51 ppb, 28.36 ppb, and 0.41%, respectively.
开发用于测定矿泉水中 Cd2+、Pb2+ 和 Cu2+ 离子的微流体纸基分析装置 (µPADs)
利用电化学和比色系统的双重检测技术,成功开发出了微流体纸基分析装置(µPADs)。µPADs 可用作铅(II)、镉(II)和铜(II)传感器来检测水质。制作过程采用了热压印和丝网印刷方法。电化学区的工作电极通过金属铋沉积工艺得到增强,而在比色区,用硫辛酸和丹酰肼修饰的金纳米粒子(TA-Au-DNS)作为比色传感器来检测铜。使用傅立叶变换红外(FTIR)和接触角计(CAM)对 µPADs 的基本材料进行了表征。在电化学区,方波阳极剥离伏安法(SWASV)的信号可以很好地检测铅(II)和镉(II)(从 0 到 100 ppb),检测限分别为 1.588 和 1.42 ppb。在比色区,TA-Au-DNS 检测铜金属的性能是通过微型 µPADs 阅读器的红-绿-蓝(RGB)传感器读数获得的。在检测铜(II)(从 58 到 100 ppb)时,其 LOD、LOQ 和平均 Vx0(线性值)分别为 8.51 ppb、28.36 ppb 和 0.41%。
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17 weeks
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