Literature DB >> 32028771

Fully Integrated, Simple, and Low-Cost Electrochemical Sensor Array for in Situ Water Quality Monitoring.

Arif U Alam1, Dennis Clyne1, Hao Jin2, Nan-Xing Hu3, M Jamal Deen1.   

Abstract

Rapid, accurate and inexpensive monitoring of water quality parameters is indispensable for continued water safety, especially in resource-limited areas. Most conventional sensing systems either can only monitor one parameter at a time or lack user-friendly on-site monitoring capabilities. A fully integrated electrochemical sensor array is an excellent solution to this barrier. Electrochemical sensing methods involve transduction of water quality parameters where chemical interactions are converted to electrical signals. The challenge remains in designing low-cost, easy-to-use, and highly sensitive sensor array that can continuously monitor major water quality parameters such as pH, free chlorine, temperature along with emerging pharmaceutical contaminants, and heavy metal without the use of expensive laboratory-based techniques and trained personnel. Here, we overcame this challenge through realizing a fully integrated electrochemical sensing system that offers simultaneous monitoring of pH (57.5 mV/pH), free chlorine (186 nA/ppm), and temperature (16.9 mV/°C) and on-demand monitoring of acetaminophen and 17β-estradiol (<10 nM) and heavy metal (<10 ppb), bridging the technological gap between signal transduction, processing, wireless transmission, and smartphone interfacing. This was achieved by merging nanomaterials and carbon nanotube-based sensors fabricated on microscopic glass slides controlled by a custom-designed readout circuit, a potentiostat, and an Android app. The sensing system can be easily modified and programmed to integrate other sensors, a capability that can be exploited to monitor a range of water quality parameters. We demonstrate the integrated system for monitoring tap, swimming pool, and lake water. This system opens the possibility for a wide range of low-cost and ubiquitous environmental monitoring applications.

Entities:  

Keywords:  acetaminophen; electrochemical sensing; estrogen; free chlorine; heavy metal; pH; temperature; water quality monitoring

Year:  2020        PMID: 32028771     DOI: 10.1021/acssensors.9b02095

Source DB:  PubMed          Journal:  ACS Sens        ISSN: 2379-3694            Impact factor:   7.711


  6 in total

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Authors:  Brandon K Ashley; Jianye Sui; Mehdi Javanmard; Umer Hassan
Journal:  Lab Chip       Date:  2022-08-09       Impact factor: 7.517

2.  Aluminum Oxide-Coated Particle Differentiation Employing Supervised Machine Learning and Impedance Cytometry.

Authors:  Brandon K Ashley; Jianye Sui; Mehdi Javanmard; Umer Hassan
Journal:  IEEE Int Conf Nano Micro Eng Mol Syst       Date:  2022-06-10

3.  A compact, low-cost, and binary sensing (BiSense) platform for noise-free and self-validated impedimetric detection of COVID-19 infected patients.

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Journal:  Biosens Bioelectron       Date:  2022-06-14       Impact factor: 12.545

4.  Detection of Imatinib Based on Electrochemical Sensor Constructed Using Biosynthesized Graphene-Silver Nanocomposite.

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Journal:  Front Chem       Date:  2021-04-22       Impact factor: 5.221

5.  Rapid and Direct Perfluorooctanoic Acid Sensing with Selective Ionomer Coatings on Screen-Printed Electrodes under Environmentally Relevant Concentrations.

Authors:  Sushant P Sahu; Subarna Kole; Christopher G Arges; Manas Ranjan Gartia
Journal:  ACS Omega       Date:  2022-02-03

6.  Open and Cost-Effective Digital Ecosystem for Lake Water Quality Monitoring.

Authors:  Daniele Strigaro; Massimiliano Cannata; Fabio Lepori; Camilla Capelli; Andrea Lami; Dario Manca; Silvio Seno
Journal:  Sensors (Basel)       Date:  2022-09-04       Impact factor: 3.847

  6 in total

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