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Portable Nanohybrid Paper-Based Chemiresistive Sensor for Free Chlorine Detection

机译:用于游离氯检测的便携式纳米纸化切削传感器

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Detecting the concentration of free chlorine is important for monitoring the quality of water. In this study, we report a nanohybrid paper-based chemiresistive sensor that can be used with smartphones to detect free chlorine ions. The sensor was fabricated using a simple and standardized coating process. The graphene and poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) nanohybrid paper-based sensing device exhibited a more stable and intuitive response to free chlorine than that exhibited by the device using only PEDOT:PSS. The nanohybrid paper-based sensor was sensitive to free chlorine concentrations in a linear range of 0.1–500 ppm, and the limit of detection was 0.18 ppm. The sensor showed specificity for free chloride ions and detection capability in samples. The sensor was integrated as a module with an electric readout system, and the measured signals and results could be displayed in real time on a smartphone. Therefore, the proposed sensing platform is suitable owing to its portability, low cost, ease of use, and capability for on-site water quality measurement.
机译:检测自由氯的浓度对于监测水的质量是重要的。在这项研究中,我们报告了一种基于纳米纸的化学传感器,可以与智能手机一起使用以检测游离氯离子。使用简单且标准化的涂布方法制造传感器。石墨烯和聚(3,4-亚乙二氧基噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)基于纳米泛纸的传感装置对游离氯的响应表现出比仅使用PEDOT:PSS所呈现的空闲氯的更稳定和直观的反应。基于纳米纸纸的传感器对0.1-500ppm的线性范围内的自由氯浓度敏感,检测限为0.18ppm。传感器显示出自由氯离子的特异性和样品中的检测能力。传感器作为具有电动读数系统的模块集成,并且测量的信号和结果可以在智能手机上实时显示。因此,所提出的传感平台由于其可移植性,低成本,易用性以及现场水质测量的能力而合适。

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