Structural characterization and electrochemical performance of nitrogen doped graphene supercapacitor electrode fabricated by hydrothermal method
The introduction of nitrogen (N) into graphene is of great focus as it escalates overall device performance as the introduction of N atoms improves the electronics of the graphene. In this work, the N-doped graphene electrode was prepared by using hydrothermal method where graphene nanoplatelet was...
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my.iium.irep.904942021-06-30T09:13:31Z http://irep.iium.edu.my/90494/ Structural characterization and electrochemical performance of nitrogen doped graphene supercapacitor electrode fabricated by hydrothermal method Mohd Abid, Mohd Asyadi Azam Safie, Nur Ezyanie Abdul Aziz, Mohd Fareezuan Raja Seman, Raja Noor Amalina Suhaili, Muhamad Rafi Abdul Latiff, Anas Arith, Faiz Mohamed Kassim, Anuar Ani, Mohd Hanafi TA401 Materials of engineering and construction The introduction of nitrogen (N) into graphene is of great focus as it escalates overall device performance as the introduction of N atoms improves the electronics of the graphene. In this work, the N-doped graphene electrode was prepared by using hydrothermal method where graphene nanoplatelet was used as active material and aqueous ammonia as the nitrogen source. The electrode was then used as the supercapacitor electrode. From Raman analysis, the ID/IG ratio of N-doped graphene has a higher value than that of pristine graphene. This indicates the N-doped graphene possessed more defects and has a higher degree of disorder within the graphene sheet. For X-ray diffraction analysis, the result exhibits a broad peak at 2θ = 26.3o, corresponding to the graphitic profile with an interlayer spacing of 3.57 Å. X-ray photoelectron spectroscopy analysis proved that there is a presence of nitrogen on the graphene surface, with 2.35 % of the atomic concentration. From the cyclic voltammetry, all curves showed an almost rectangular shape at the scan rates of 10 to 100 mVs-1. The calculated specific gravimetric capacitance is 25.2 F g-1 at 10 mV s-1. In addition, charge- discharge analysis confirmed the typical behavior of electric double layer capacitor from the linear symmetric slopes. Penerbit Unimap 2021-04 Article PeerReviewed application/pdf en http://irep.iium.edu.my/90494/7/90494_Structural%20characterization%20and%20electrochemical%20performance%20of%20nitrogen%20doped%20graphene.pdf Mohd Abid, Mohd Asyadi Azam and Safie, Nur Ezyanie and Abdul Aziz, Mohd Fareezuan and Raja Seman, Raja Noor Amalina and Suhaili, Muhamad Rafi and Abdul Latiff, Anas and Arith, Faiz and Mohamed Kassim, Anuar and Ani, Mohd Hanafi (2021) Structural characterization and electrochemical performance of nitrogen doped graphene supercapacitor electrode fabricated by hydrothermal method. International Journal of Nanoelectronics and Materials, 14 (2). pp. 127-136. ISSN 1985-5761 E-ISSN 2232-1535 https://ijneam.unimap.edu.my/index.php/home |
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TA401 Materials of engineering and construction Mohd Abid, Mohd Asyadi Azam Safie, Nur Ezyanie Abdul Aziz, Mohd Fareezuan Raja Seman, Raja Noor Amalina Suhaili, Muhamad Rafi Abdul Latiff, Anas Arith, Faiz Mohamed Kassim, Anuar Ani, Mohd Hanafi Structural characterization and electrochemical performance of nitrogen doped graphene supercapacitor electrode fabricated by hydrothermal method |
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The introduction of nitrogen (N) into graphene is of great focus as it escalates overall device performance as the introduction of N atoms improves the electronics of the graphene. In this work, the N-doped graphene electrode was prepared by using hydrothermal method where graphene nanoplatelet was used as active material and aqueous ammonia as the nitrogen source. The electrode was then used as the supercapacitor electrode. From Raman analysis, the ID/IG ratio of N-doped graphene has a higher value than that of pristine graphene. This indicates the N-doped graphene possessed more defects and has a higher degree of disorder within the graphene sheet. For X-ray diffraction analysis, the result exhibits a broad peak at 2θ = 26.3o, corresponding to the graphitic profile with an interlayer spacing of 3.57 Å. X-ray photoelectron spectroscopy analysis proved that there is a presence of nitrogen on the graphene surface, with 2.35 % of the atomic concentration. From the cyclic voltammetry, all curves showed an almost rectangular shape at the scan rates of 10 to 100 mVs-1. The calculated specific gravimetric capacitance is 25.2 F g-1 at 10 mV s-1. In addition, charge- discharge analysis confirmed the typical behavior of electric double layer capacitor from the
linear symmetric slopes. |
format |
Article |
author |
Mohd Abid, Mohd Asyadi Azam Safie, Nur Ezyanie Abdul Aziz, Mohd Fareezuan Raja Seman, Raja Noor Amalina Suhaili, Muhamad Rafi Abdul Latiff, Anas Arith, Faiz Mohamed Kassim, Anuar Ani, Mohd Hanafi |
author_facet |
Mohd Abid, Mohd Asyadi Azam Safie, Nur Ezyanie Abdul Aziz, Mohd Fareezuan Raja Seman, Raja Noor Amalina Suhaili, Muhamad Rafi Abdul Latiff, Anas Arith, Faiz Mohamed Kassim, Anuar Ani, Mohd Hanafi |
author_sort |
Mohd Abid, Mohd Asyadi Azam |
title |
Structural characterization and electrochemical performance of nitrogen doped graphene supercapacitor electrode fabricated by hydrothermal method |
title_short |
Structural characterization and electrochemical performance of nitrogen doped graphene supercapacitor electrode fabricated by hydrothermal method |
title_full |
Structural characterization and electrochemical performance of nitrogen doped graphene supercapacitor electrode fabricated by hydrothermal method |
title_fullStr |
Structural characterization and electrochemical performance of nitrogen doped graphene supercapacitor electrode fabricated by hydrothermal method |
title_full_unstemmed |
Structural characterization and electrochemical performance of nitrogen doped graphene supercapacitor electrode fabricated by hydrothermal method |
title_sort |
structural characterization and electrochemical performance of nitrogen doped graphene supercapacitor electrode fabricated by hydrothermal method |
publisher |
Penerbit Unimap |
publishDate |
2021 |
url |
http://irep.iium.edu.my/90494/7/90494_Structural%20characterization%20and%20electrochemical%20performance%20of%20nitrogen%20doped%20graphene.pdf http://irep.iium.edu.my/90494/ https://ijneam.unimap.edu.my/index.php/home |
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