Non-enzymatic glucose sensor with electrodeposited silver/carbon nanotubes composite electrode
Diabetes mellitus is a debilitating disease that affects each and every organ of human body. Hence it is important to continuously monitor the glucose level throughout the day and night. Glucose sensors are in great demand due to a rapid increase in diabetic community. A strategy has been implemente...
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Published in | Bioscience reports Vol. 39; no. 6 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
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Portland Press Ltd
28.06.2019
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Abstract | Diabetes mellitus is a debilitating disease that affects each and every organ of human body. Hence it is important to continuously monitor the glucose level throughout the day and night. Glucose sensors are in great demand due to a rapid increase in diabetic community. A strategy has been implemented here to fabricate silver nanoparticles (AgNPs) with the support of functionalized carbon nanotubes (f-CNTs). Silver/carbon nanotubes (Ag/CNTs) nanocomposite electrode have been prepared by electrochemical process on Fluorine doped tin oxide (FTO) glass, by varying silver (Ag) concentrations for non-enzymatic glucose sensor. The variable Ag concentration in the morphology of Ag/CNTs nanocomposite has influenced the electrical conductivity, oxidation and reduction potential and electrochemical activity of glucose. Highest current density and good electrocatalytic activity for electrodes are obtained at 70 mM concentration of silver in Ag/CNTs composite. The present study indicates that the Ag/CNTs electrode is a possible substitute of the expensive glassy carbon electrode for enzyme-free glucose sensors. |
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AbstractList | Diabetes mellitus is a debilitating disease that affects each and every organ of human body. Hence it is important to continuously monitor the glucose level throughout the day and night. Glucose sensors are in great demand due to a rapid increase in diabetic community. A strategy has been implemented here to fabricate silver nanoparticles (AgNPs) with the support of functionalized carbon nanotubes (f-CNTs). Silver/carbon nanotubes (Ag/CNTs) nanocomposite electrode have been prepared by electrochemical process on Fluorine doped tin oxide (FTO) glass, by varying silver (Ag) concentrations for non-enzymatic glucose sensor. The variable Ag concentration in the morphology of Ag/CNTs nanocomposite has influenced the electrical conductivity, oxidation and reduction potential and electrochemical activity of glucose. Highest current density and good electrocatalytic activity for electrodes are obtained at 70 mM concentration of silver in Ag/CNTs composite. The present study indicates that the Ag/CNTs electrode is a possible substitute of the expensive glassy carbon electrode for enzyme-free glucose sensors. Abstract Diabetes mellitus is a debilitating disease that affects each and every organ of human body. Hence it is important to continuously monitor the glucose level throughout the day and night. Glucose sensors are in great demand due to a rapid increase in diabetic community. A strategy has been implemented here to fabricate silver nanoparticles (AgNPs) with the support of functionalized carbon nanotubes (f-CNTs). Silver/carbon nanotubes (Ag/CNTs) nanocomposite electrode have been prepared by electrochemical process on Fluorine doped tin oxide (FTO) glass, by varying silver (Ag) concentrations for non-enzymatic glucose sensor. The variable Ag concentration in the morphology of Ag/CNTs nanocomposite has influenced the electrical conductivity, oxidation and reduction potential and electrochemical activity of glucose. Highest current density and good electrocatalytic activity for electrodes are obtained at 70 mM concentration of silver in Ag/CNTs composite. The present study indicates that the Ag/CNTs electrode is a possible substitute of the expensive glassy carbon electrode for enzyme-free glucose sensors. |
Author | Tariq, Sana Ashiq, M Gul Bahar Khan, Waqar A Shabbir, Syeda Ammara |
Author_xml | – sequence: 1 givenname: Syeda Ammara orcidid: 0000-0003-3302-4634 surname: Shabbir fullname: Shabbir, Syeda Ammara email: ammaraanwar@fccollege.edu.pk organization: Department of Physics, Forman Christian College (A Chartered University), Lahore 54600, Pakistan ammaraanwar@fccollege.edu.pk – sequence: 2 givenname: Sana surname: Tariq fullname: Tariq, Sana organization: Department of Physics, Forman Christian College (A Chartered University), Lahore 54600, Pakistan – sequence: 3 givenname: M Gul Bahar surname: Ashiq fullname: Ashiq, M Gul Bahar organization: Department of Physics,College of Science, Imam Abdulrahman Bin Faisal University, P.O.Box 1982, 31441, Dammam Saudi Arabia. Basic and Applied Scientific Research Center,Imam Abdulrahman Bin Faisal University, P.O.Box 1982, 31441, Dammam Saudi Arabia – sequence: 4 givenname: Waqar A surname: Khan fullname: Khan, Waqar A organization: Department of Mechanical Engineering, College of Engineering, Prince Mohammad Bin Fahd University, Al Khobar 31952, Kingdom of Saudi Arabia |
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Keywords | nonenzymatic carbon nanotubes glucose sensor silver nanoparticles nanocomposites |
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Snippet | Diabetes mellitus is a debilitating disease that affects each and every organ of human body. Hence it is important to continuously monitor the glucose level... Abstract Diabetes mellitus is a debilitating disease that affects each and every organ of human body. Hence it is important to continuously monitor the glucose... |
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