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Development of paper-based microfluidic analytical device for iron assay using photomask printed with 3D printer for fabrication of hydrophilic and hydrophobic zones on paper by photolithography

机译:基于铁的纸质微流体分析设备的开发,该设备使用3D打印机打印的光掩模通过光刻在纸上制造亲水和疏水区域

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This paper describes a paper-based microfluidic analytical device for iron assay using a photomask printed with a 3D printer for fabrication of hydrophilic and hydrophobic zones on the paper by photolithography. Several designed photomasks for patterning paper-based microfluidic analytical devices can be printed with a 3D printer easily, rapidly and inexpensively. A chromatography paper was impregnated with the octadecyltrichlorosilane n-hexane solution and hydrophobized. After the hydrophobic zone of the paper was exposed to the UV light through the photomask, the hydrophilic zone was generated. The smallest functional hydrophilic channel and hydrophobic barrier were ca. 500 mu m and ca. 100 mu m in width, respectively. The fabrication method has high stability, resolution and precision for hydrophilic channel and hydrophobic barrier. This test paper was applied to the analysis of iron in water samples using a colorimetry with phenanthroline. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文介绍了一种基于铁的纸质微流体分析设备,该设备使用3D打印机打印的光掩模通过光刻技术在纸上制造亲水和疏水区域。可以使用3D打印机轻松,快速且廉价地打印用于图案化纸基微流体分析设备的几种设计的光掩模。色谱纸用十八烷基三氯硅烷正己烷溶液浸渍并疏水化。在纸的疏水区通过光掩模暴露于紫外线后,产生了亲水区。最小的功能性亲水通道和疏水性屏障为约。 500微米左右宽度分别为100微米。该制备方法对亲水通道和疏水性阻挡层具有很高的稳定性,分辨率和精度。该试纸用于使用菲咯啉的比色法分析水中的铁。 (C)2015 Elsevier B.V.保留所有权利。

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