Research Article
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Year 2024, Volume: 7 Issue: 2, 137 - 147, 18.12.2024
https://doi.org/10.54565/jphcfum.1579162

Abstract

Project Number

2020-1- TP2- 4045

References

  • Balli B, Şavk A, Şen F. 5 - Graphene and polymer composites for supercapacitor applications. In: Khan A, Jawaid M, Inamuddin, Asiri AM, editors. Nanocarbon and its Composites: Woodhead Publishing; 2019. p. 123-51.
  • Iurchenkova AA, Fedorovskaya EO, Asanov IP, Arkhipov VE, Popov KM, Baskakova KI, et al. MWCNT buckypaper/polypyrrole nanocomposites for supercapasitor application. Electrochimica Acta 2020;335:135700.
  • Boorboor Ajdari F, Kowsari E, Niknam Shahrak M, Ehsani A, Kiaei Z, Torkzaban H, et al. A review on the field patents and recent developments over the application of metal organic frameworks (MOFs) in supercapacitors. Coordination Chemistry Reviews 2020;422:213441.
  • Peçenek H, Yetiman S, Dokan FK, Onses MS, Yılmaz E, Sahmetlioglu E. Effects of carbon nanomaterials and MXene addition on the performance of nitrogen doped MnO2 based supercapacitors. Ceramics International 2022;48:7253-60.
  • Volfkovich YM. High power supercapacitors. Review. Journal of Electroanalytical Chemistry 2024;963:118290.
  • Cihat A, Oktay Emre Y. - The behavior of NiO/GO nanoelectroseramics in different solvents: Synthesis, structural, thermal and electro-optical properties. 2024;- 025:- 137.
  • Denshchikov KK, Izmaylova MY, Zhuk AZ, Vygodskii YS, Novikov VT, Gerasimov AF. 1-Methyl-3-butylimidazolium tetraflouroborate with activated carbon for electrochemical double layer supercapacitors. Electrochimica Acta 2010;55:7506-10.
  • Alver Ü, Tanrıverdi A, Akgül Ö. Hydrothermal preparation of ZnO electrodes synthesized from different precursors for electrochemical supercapacitors. Synthetic Metals 2016;211:30-4.
  • Bayram O. A study on 3D graphene synthesized directly on Glass/FTO substrates: Its Raman mapping and optical properties. Ceramics International 2019;45:16829-35.

A different approach to graphene-doped MnO Supercapacitor production: synthesis with different solvents

Year 2024, Volume: 7 Issue: 2, 137 - 147, 18.12.2024
https://doi.org/10.54565/jphcfum.1579162

Abstract

Supercapacitors fill the performance gap between traditional capacitors and batteries. Due to their higher energy density than traditional capacitors and higher rapid charge/discharge and cycle life than batteries, supercapacitors offer a versatile solution for storing and transferring high-density energy obtained at variable times within seconds and integrating into energy transfer lines, unlike renewable energy sources. . In this study, graphene oxide (GO), which will be used to produce materials with supercapacitive properties, was synthesized by the Modified Hummers method. The produced graphene oxide (GO) was reinforced into metal oxide (MnO) solutions synthesized by the sol-gel method. As a result of the characterization processes of the obtained samples, the effects of graphene oxide (GO) and different solvents on the composite materials were examined by XRD, SEM, FT-IR, DTA-TG, UV-vis and cyclic voltammetry (CV) methods.

Supporting Institution

Mersin University

Project Number

2020-1- TP2- 4045

Thanks

Management Unit of Scientific Research Projects of Mersin University (BAP)

References

  • Balli B, Şavk A, Şen F. 5 - Graphene and polymer composites for supercapacitor applications. In: Khan A, Jawaid M, Inamuddin, Asiri AM, editors. Nanocarbon and its Composites: Woodhead Publishing; 2019. p. 123-51.
  • Iurchenkova AA, Fedorovskaya EO, Asanov IP, Arkhipov VE, Popov KM, Baskakova KI, et al. MWCNT buckypaper/polypyrrole nanocomposites for supercapasitor application. Electrochimica Acta 2020;335:135700.
  • Boorboor Ajdari F, Kowsari E, Niknam Shahrak M, Ehsani A, Kiaei Z, Torkzaban H, et al. A review on the field patents and recent developments over the application of metal organic frameworks (MOFs) in supercapacitors. Coordination Chemistry Reviews 2020;422:213441.
  • Peçenek H, Yetiman S, Dokan FK, Onses MS, Yılmaz E, Sahmetlioglu E. Effects of carbon nanomaterials and MXene addition on the performance of nitrogen doped MnO2 based supercapacitors. Ceramics International 2022;48:7253-60.
  • Volfkovich YM. High power supercapacitors. Review. Journal of Electroanalytical Chemistry 2024;963:118290.
  • Cihat A, Oktay Emre Y. - The behavior of NiO/GO nanoelectroseramics in different solvents: Synthesis, structural, thermal and electro-optical properties. 2024;- 025:- 137.
  • Denshchikov KK, Izmaylova MY, Zhuk AZ, Vygodskii YS, Novikov VT, Gerasimov AF. 1-Methyl-3-butylimidazolium tetraflouroborate with activated carbon for electrochemical double layer supercapacitors. Electrochimica Acta 2010;55:7506-10.
  • Alver Ü, Tanrıverdi A, Akgül Ö. Hydrothermal preparation of ZnO electrodes synthesized from different precursors for electrochemical supercapacitors. Synthetic Metals 2016;211:30-4.
  • Bayram O. A study on 3D graphene synthesized directly on Glass/FTO substrates: Its Raman mapping and optical properties. Ceramics International 2019;45:16829-35.
There are 9 citations in total.

Details

Primary Language English
Subjects Functional Materials
Journal Section Articles
Authors

Cihat Aydın 0000-0001-9997-6326

Project Number 2020-1- TP2- 4045
Publication Date December 18, 2024
Submission Date November 4, 2024
Acceptance Date November 9, 2024
Published in Issue Year 2024 Volume: 7 Issue: 2

Cite

APA Aydın, C. (2024). A different approach to graphene-doped MnO Supercapacitor production: synthesis with different solvents. Journal of Physical Chemistry and Functional Materials, 7(2), 137-147. https://doi.org/10.54565/jphcfum.1579162
AMA Aydın C. A different approach to graphene-doped MnO Supercapacitor production: synthesis with different solvents. Journal of Physical Chemistry and Functional Materials. December 2024;7(2):137-147. doi:10.54565/jphcfum.1579162
Chicago Aydın, Cihat. “A Different Approach to Graphene-Doped MnO Supercapacitor Production: Synthesis With Different Solvents”. Journal of Physical Chemistry and Functional Materials 7, no. 2 (December 2024): 137-47. https://doi.org/10.54565/jphcfum.1579162.
EndNote Aydın C (December 1, 2024) A different approach to graphene-doped MnO Supercapacitor production: synthesis with different solvents. Journal of Physical Chemistry and Functional Materials 7 2 137–147.
IEEE C. Aydın, “A different approach to graphene-doped MnO Supercapacitor production: synthesis with different solvents”, Journal of Physical Chemistry and Functional Materials, vol. 7, no. 2, pp. 137–147, 2024, doi: 10.54565/jphcfum.1579162.
ISNAD Aydın, Cihat. “A Different Approach to Graphene-Doped MnO Supercapacitor Production: Synthesis With Different Solvents”. Journal of Physical Chemistry and Functional Materials 7/2 (December 2024), 137-147. https://doi.org/10.54565/jphcfum.1579162.
JAMA Aydın C. A different approach to graphene-doped MnO Supercapacitor production: synthesis with different solvents. Journal of Physical Chemistry and Functional Materials. 2024;7:137–147.
MLA Aydın, Cihat. “A Different Approach to Graphene-Doped MnO Supercapacitor Production: Synthesis With Different Solvents”. Journal of Physical Chemistry and Functional Materials, vol. 7, no. 2, 2024, pp. 137-4, doi:10.54565/jphcfum.1579162.
Vancouver Aydın C. A different approach to graphene-doped MnO Supercapacitor production: synthesis with different solvents. Journal of Physical Chemistry and Functional Materials. 2024;7(2):137-4.