Carbon Nanoparticles-Based Sensor Analysis

In this article, an electrochemical sensor in the form of a field effect transistor is designed and fabricated. This sensor is based on carbon nanoparticles grown between two metal electrodes. These nanoparticles have been synthesized by the electric arc discharge method in suitable environmental co...

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Main Authors: Golsa Taghizadeh Afshari, Mohammad Taghi Ahmadi, Amir Fathi
Format: Article
Language:English
Published: Amirkabir University of Technology 2024-07-01
Series:AUT Journal of Electrical Engineering
Subjects:
Online Access:https://eej.aut.ac.ir/article_5369_5b7c29f675136ee64f6ddc9b509b9f1e.pdf
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author Golsa Taghizadeh Afshari
Mohammad Taghi Ahmadi
Amir Fathi
author_facet Golsa Taghizadeh Afshari
Mohammad Taghi Ahmadi
Amir Fathi
author_sort Golsa Taghizadeh Afshari
collection DOAJ
description In this article, an electrochemical sensor in the form of a field effect transistor is designed and fabricated. This sensor is based on carbon nanoparticles grown between two metal electrodes. These nanoparticles have been synthesized by the electric arc discharge method in suitable environmental conditions and in different lengths from the decomposition of butane gas. Considering this set as a field effect transistor, its channel is always established and it is responsible for detecting the desired material. To check the correct functioning of the sensor, its sensitivity to different concentrations of saltwater was checked and the resistance diagram of the sensor as its electrical output was obtained in the presence of different concentrations of saltwater for different lengths of the channel.
format Article
id doaj-art-ccbc946ebcfd4defadd0fe87d52a1355
institution OA Journals
issn 2588-2910
2588-2929
language English
publishDate 2024-07-01
publisher Amirkabir University of Technology
record_format Article
series AUT Journal of Electrical Engineering
spelling doaj-art-ccbc946ebcfd4defadd0fe87d52a13552025-08-20T02:34:56ZengAmirkabir University of TechnologyAUT Journal of Electrical Engineering2588-29102588-29292024-07-0156339940610.22060/eej.2024.22943.55765369Carbon Nanoparticles-Based Sensor AnalysisGolsa Taghizadeh Afshari0Mohammad Taghi Ahmadi1Amir Fathi2Department of Electrical and Computer, Urmia University, Urmia, IranInstitute of Power Engineering, University of Tenaga Nasional, Jalan IKRAM-UNITEN, Kajang, Selangor,43000,MalaysiaDepartment of Electrical and Computer, Urmia University, Urmia, IranIn this article, an electrochemical sensor in the form of a field effect transistor is designed and fabricated. This sensor is based on carbon nanoparticles grown between two metal electrodes. These nanoparticles have been synthesized by the electric arc discharge method in suitable environmental conditions and in different lengths from the decomposition of butane gas. Considering this set as a field effect transistor, its channel is always established and it is responsible for detecting the desired material. To check the correct functioning of the sensor, its sensitivity to different concentrations of saltwater was checked and the resistance diagram of the sensor as its electrical output was obtained in the presence of different concentrations of saltwater for different lengths of the channel.https://eej.aut.ac.ir/article_5369_5b7c29f675136ee64f6ddc9b509b9f1e.pdfnanoparticlessensorelectrochemical sensorarc discharge methodfet sensors
spellingShingle Golsa Taghizadeh Afshari
Mohammad Taghi Ahmadi
Amir Fathi
Carbon Nanoparticles-Based Sensor Analysis
AUT Journal of Electrical Engineering
nanoparticles
sensor
electrochemical sensor
arc discharge method
fet sensors
title Carbon Nanoparticles-Based Sensor Analysis
title_full Carbon Nanoparticles-Based Sensor Analysis
title_fullStr Carbon Nanoparticles-Based Sensor Analysis
title_full_unstemmed Carbon Nanoparticles-Based Sensor Analysis
title_short Carbon Nanoparticles-Based Sensor Analysis
title_sort carbon nanoparticles based sensor analysis
topic nanoparticles
sensor
electrochemical sensor
arc discharge method
fet sensors
url https://eej.aut.ac.ir/article_5369_5b7c29f675136ee64f6ddc9b509b9f1e.pdf
work_keys_str_mv AT golsataghizadehafshari carbonnanoparticlesbasedsensoranalysis
AT mohammadtaghiahmadi carbonnanoparticlesbasedsensoranalysis
AT amirfathi carbonnanoparticlesbasedsensoranalysis