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- W2742426648 abstract "In this article, a transparent integrated microfluidic device composed of a 3D-printed thin-layer flow cell (3D-PTLFC) and an S-shaped screen-printed electrode (SPE) has been designed and fabricated for heavy metal ion stripping analysis. A finite element modeling (FEM) simulation is employed to optimize the shape of the electrode, the direction of the inlet pipeline, the thin-layer channel height and the sample flow rate to enhance the electron-enrichment efficiency for stripping analysis. The results demonstrate that the S-shaped SPE configuration matches the channel in 3D-PTLFC perfectly for the anodic stripping behavior of the heavy metal ions. Under optimized conditions, a wide linear range of 1–80 µg l−1 is achieved for Pb2+ detection with a limit of 0.3 µg l−1 for the microfluidic device. Thus, the obtained integrated microfluidic device proves to be a promising approach for heavy metal ions stripping analysis with low cost and high performance." @default.
- W2742426648 created "2017-08-17" @default.
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- W2742426648 date "2017-09-18" @default.
- W2742426648 modified "2023-09-24" @default.
- W2742426648 title "Finite element modeling simulation-assisted design of integrated microfluidic chips for heavy metal ion stripping analysis" @default.
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- W2742426648 doi "https://doi.org/10.1088/1361-6463/aa84a3" @default.
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