Title of article :
Disposable single-use electrochemical sensor: A novel hollow fiber based tool for environmental monitoring of cadmium
Author/Authors :
Moeinpour ، Fatemeh - Payame Noor University , Es haghi ، Zarrin - Payame Noor University
Pages :
13
From page :
312
To page :
324
Abstract :
The objective of this study is to design a simple, fast, sensitive and single-use electrode with the simultaneous capability of preconcentration and measuring for application in a three-electrode voltammetry system to identify and measure the heavy metal cadmium. The design process of this sensor consists of several stages. The polyurethane foam and multi-walled carbon nanotube nanoparticles were functionalized and the new nanocomposite was synthesized. Besides,with the help of an organic solvent, established on the pencil graphite electrode, it was covered with hollow fiber. In this work, for the first time, the organic solvent was employed instead of ionic liquid. The designed sensor was used to detect and measure heavy metal cadmium through differential pulse voltammetry technique, whose appearance of a sharp peak at -0.82 V indicates thepresence ofcadmium. It was found that the presence of air molecules as the analyte carrier (between hollow fiber cavities and in fixed nanocomposite on the graphite) instead of organic solvents or ionic liquids was desirable. All the synthesis stages of nanocomposite were analyzed by infrared spectroscopy. Finally, the nanocomposite morphology was obtained with a Scanning Electron Microscope. A calibration curve was drawn and a linear response with a range of 2.39 to 47.6 μM was plotted. The LOD of the designed sensor was 0.399 μM for cadmium. The mentioned sensor was used to recognize the measurement of analyte in real biological samples of urine, nail, and wastewater of the laboratory.
Keywords :
Cadmium , DPV , polyurethane foam , hollow fiber , one , use electrode
Journal title :
Iranian Chemical Communication
Serial Year :
2018
Journal title :
Iranian Chemical Communication
Record number :
2461127
Link To Document :
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