首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A suspending-droplet mode paper-based microfluidic platform for low-cost, rapid, and convenient detection of lead(II) ions in liquid solution
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A suspending-droplet mode paper-based microfluidic platform for low-cost, rapid, and convenient detection of lead(II) ions in liquid solution

机译:用于低成本,快速,方便地检测液体溶液中的悬浮液相基纸微流体平台

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摘要

Abstract A paper-based microfluidic device based on unconventional principle was developed and used to detect lead ions through a two-step process including heated incubation and subsequent mixing. The device was made by generating a superhydrophobic pattern, which defines channel and reservoir barriers, on a water-impermeable paper substrate, followed by loading and drying the reagents in the defined reservoirs. Different from the conventional paper-based devices that are made of water-permeable paper, the as-prepared device holds water drops in discrete reservoirs, and the water drops will not move unless the device is titled along the direction of the predefined channels. In this way, the liquid samples applied onto the device are handled as individual drops and could be stored, transported, and mixed on demand. Different from the conventional paper-based devices that use capillary force to drive liquid, our new device uses wetting and gravity as driving force. We name this operation principle suspending-droplet mode paper-based device (SD-μPAD). The use of a Teflon contact-printing stamp makes the production of such devices rapid, cost efficient, and mass productive. Utilizing a G-quadruplex-based luminescence switch-on assay, we demonstrated rapid, convenient, highly sensitive, and low cost detection of lead(II) ions in water samples, using a custom made battery-powered portable device, and a smart phone as the detector.
机译:<![cdata [ 抽象 基于非传统原理的纸质微流体装置被开发并用于通过两步过程检测引线离子,包括加热孵育和随后的混合。通过产生超疏水图案制备该装置,其在不透水纸基材上限定通道和储存器屏障,然后在限定的储存器中加载并干燥试剂。与由透水纸制成的传统纸张的装置不同,所制备的装置在离散储存器中保持水滴,除非该装置沿预定通道的方向标题,否则水滴不会移动。以这种方式,施加到装置上的液体样品被处理为单独的液滴,并且可以按需存储,运输和混合。不同于传统的纸质器件,该装置使用毛细力来驱动液体,我们的新装置使用润湿和重力作为驱动力。我们命名这个操作原理暂停液滴模式纸张 - 基于纸张的设备(SD- μ垫)。使用Teflon接触印花印章的使用使得这些装置的生产快速,成本高,并高生产率。利用基于G-Quadreplex的发光接通试验,我们使用定制的电池供电的便携式设备和智能手机展示了水样中的铅(II)离子的铅(II)离子的快速,方便,高度敏感和低成本检测作为探测器。

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