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A Simple Method for Developing a Hand‐Drawn Paper‐Based Sensor for Mercury; Using Green Synthesized Silver Nanoparticles and Smartphone as a Hand‐Held‐Device for Colorimetric Assay

机译:一种用于开发汞的手绘纸张传感器的简单方法; 使用绿色合成银纳米颗粒和智能手机作为比色测定的手持式装置

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Mercury ions are highly toxic at trace levels, and its pollution has posed a significant threat to the environment and public health, where current detection methods mainly require laborious operation and expensive instrumentation. Herein, a simple, cost‐effective, instrument‐free approach for selective detection of Hg~(2+)based on a hand‐drawn paper‐based naked‐eye colorimetric device is developed. To develop a hand‐drawn paper‐based device, a crayon is used to build hydrophobic barriers and a paper puncher is applied to obtain patterns as a sensing zone. A green method for the synthesis of silver nanoparticles (AgNPs) is applied using Achillea Wilhelmsii (Aw) extract. The sensing ability of Aw‐AgNPs toward Hg~(2+)is investigated in both solution‐phase and paper substrate loaded with Aw‐AgNPs using colorimetric methods. For the paper‐based sensor, the quantification of the target relies on the visual readout of a color‐changed sensing zone modified with Aw‐AgNPs. Under optimal conditions, the color of Aw‐AgNPs in aqueous solution and on the coated paper substrate can change from brown to colorless upon addition of target, with a detection limit of 28?× 10~(?9) m and 0.30?× 10~(?6) m , respectively. In conclusion, the present study indicates the potential of this hand‐drawn eco‐friendly paper‐based sensor for monitoring of mercury. A simple and instrumental‐free paper‐based colorimetric sensor for Hg~(2+)ions is provided based on a smartphone as a hand‐held‐device for colorimetric assays.
机译:汞离子对痕量水平具有浓重,其污染对环境和公共卫生产生了重大威胁,目前的检测方法主要需要艰苦的运营和昂贵的仪器。在此,开发了一种基于手绘纸的裸眼比色器件的简单,成本效益,用于选择性检测HG〜(2+)的无仪器方法。为了开发一种手绘纸的装置,使用蜡笔来构建疏水屏障,并且涂布纸张冲孔以获得作为传感区域的图案。使用Achillea WilhelMSII(AW)提取物施用一种用于合成银纳米颗粒(AgNP)的绿色方法。在使用比色方法的溶液相和纸基材中研究了AW-agnps朝向Hg〜(2+)的感测能力。对于基于纸张的传感器,目标的量化依赖于用AW-AGNP修改的颜色变化的传感区域的视觉读数。在最佳条件下,水溶液和涂覆纸基材上的AW-agnps的颜色可以在加入靶标时从棕色变为无色,检测极限为28Ω×10〜(?9)m和0.30?×10 〜(?6)m。总之,本研究表明,这种手绘环保纸张传感器的潜力,用于监测汞。基于智能手机作为用于比色测定的手持装置,提供用于HG〜(2+)离子的简单和纯工具的基于纸的比色传感器。

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