| Literature DB >> 29321463 |
Purim Jarujamrus1, Rattapol Meelapsom1, Somkid Pencharee2, Apinya Obma1, Maliwan Amatatongchai1, Nadh Ditcharoen3, Sanoe Chairam1, Suparb Tamuang1.
Abstract
A smartphone application, called CAnal, was developed as a colorimetric analyzer in paper-based devices for sensitive and selective determination of mercury(II) in water samples. Measurement on the double layer of a microfluidic paper-based analytical device (μPAD) fabricated by alkyl ketene dimer (AKD)-inkjet printing technique with special design doped with unmodified silver nanoparticles (AgNPs) onto the detection zones was performed by monitoring the gray intensity in the blue channel of AgNPs, which disintegrated when exposed to mercury(II) on μPAD. Under the optimized conditions, the developed approach showed high sensitivity, low limit of detection (0.003 mg L-1, 3SD blank/slope of the calibration curve), small sample volume uptake (two times of 2 μL), and short analysis time. The linearity range of this technique ranged from 0.01 to 10 mg L-1 (r2 = 0.993). Furthermore, practical analysis of various water samples was also demonstrated to have acceptable performance that was in agreement with the data from cold vapor atomic absorption spectrophotometry (CV-AAS), a conventional method. The proposed technique allows for a rapid, simple (instant report of the final mercury(II) concentration in water samples via smartphone display), sensitive, selective, and on-site analysis with high sample throughput (48 samples h-1, n = 3) of trace mercury(II) in water samples, which is suitable for end users who are unskilled in analyzing mercury(II) in water samples.Entities:
Keywords: CV-AAS; ImageJ; Mercury; RGB system; cold vapor atomic absorption spectrophotometry; microfluidic paper-based analytical device; silver nanoparticles; smartphone
Year: 2018 PMID: 29321463 DOI: 10.2116/analsci.34.75
Source DB: PubMed Journal: Anal Sci ISSN: 0910-6340 Impact factor: 2.081