Butler-Volmer current equation and fractal nature correction in electrochemical energy
Authors
Mitić, Vojislav V.Lazović, Goran

Đorđević, Dragan
Stanković, Maja
Paunović, Vesna

Krstić, Nenad
Manojlović, Jelena

Article (Published version)
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The Global Energy Crisis necessitated improving research into new, renewable and alternative energy sources. Due to that, our focus is on the area of some phenomena and applications where different synthetic methods and micro-structure property optimization achieved significant improvement in the electro physical properties of output materials and components. This is especially important for higher energy efficiency and electricity production (batteries and battery systems, fuel cells, and hydrogen energy).The improvement of energy storage tank capacity is one of the most important development issues in the energy sphere too. It is because of this very promising research and application area that we are expanding the knowledge on these phenomena through fractal nature analysis. So, the results obtained in the field of electrochemical energy sources, especially in electrolyte development, are taken into account the analysis of fractal nature optimization. Based on the research field of ...fractal material science, particularly electronic materials, we conducted research in micro-structure fractal influence in the area of electrochemistry. We investigated the consolidation parameters of Fe2O3 redox processes. The influence of activation energy, fundamental thermodynamic parameters, and also the fractal correction of electrode surface area through complex fractal dimension with recognized grains and pores, and the Brownian motion of particles is introduced. Finally, the electrochemical Butler-Volmer equation fractalization is obtained. These results practically open new frontiers in electrochemical energy processes performed through the Arrhenius equation within electrolyte bulk and electrode relations and more complete and precise energy generation.
Keywords:
electrochemistry / Arrhenius equation / Butler-Volmer equation / thermodynamic parameters / fractalsSource:
Thermal Science, 2021, 25, 3 Part A, 1837-1848Publisher:
- Belgrade : Vinča Institute of Nuclear Sciences
Funding / projects:
DOI: 10.2298/TSCI200117232M
ISSN: 0354-9836; 2334-7163
WoS: 000652180700016
Scopus: 2-s2.0-85105065252
Institution/Community
Институт техничких наука САНУ / Institute of Technical Sciences of SASATY - JOUR AU - Mitić, Vojislav V. AU - Lazović, Goran AU - Đorđević, Dragan AU - Stanković, Maja AU - Paunović, Vesna AU - Krstić, Nenad AU - Manojlović, Jelena PY - 2021 UR - https://dais.sanu.ac.rs/123456789/12391 AB - The Global Energy Crisis necessitated improving research into new, renewable and alternative energy sources. Due to that, our focus is on the area of some phenomena and applications where different synthetic methods and micro-structure property optimization achieved significant improvement in the electro physical properties of output materials and components. This is especially important for higher energy efficiency and electricity production (batteries and battery systems, fuel cells, and hydrogen energy).The improvement of energy storage tank capacity is one of the most important development issues in the energy sphere too. It is because of this very promising research and application area that we are expanding the knowledge on these phenomena through fractal nature analysis. So, the results obtained in the field of electrochemical energy sources, especially in electrolyte development, are taken into account the analysis of fractal nature optimization. Based on the research field of fractal material science, particularly electronic materials, we conducted research in micro-structure fractal influence in the area of electrochemistry. We investigated the consolidation parameters of Fe2O3 redox processes. The influence of activation energy, fundamental thermodynamic parameters, and also the fractal correction of electrode surface area through complex fractal dimension with recognized grains and pores, and the Brownian motion of particles is introduced. Finally, the electrochemical Butler-Volmer equation fractalization is obtained. These results practically open new frontiers in electrochemical energy processes performed through the Arrhenius equation within electrolyte bulk and electrode relations and more complete and precise energy generation. PB - Belgrade : Vinča Institute of Nuclear Sciences T2 - Thermal Science T1 - Butler-Volmer current equation and fractal nature correction in electrochemical energy SP - 1837 EP - 1848 VL - 25 IS - 3 Part A DO - 10.2298/TSCI200117232M UR - https://hdl.handle.net/21.15107/rcub_dais_12391 ER -
@article{ author = "Mitić, Vojislav V. and Lazović, Goran and Đorđević, Dragan and Stanković, Maja and Paunović, Vesna and Krstić, Nenad and Manojlović, Jelena", year = "2021", abstract = "The Global Energy Crisis necessitated improving research into new, renewable and alternative energy sources. Due to that, our focus is on the area of some phenomena and applications where different synthetic methods and micro-structure property optimization achieved significant improvement in the electro physical properties of output materials and components. This is especially important for higher energy efficiency and electricity production (batteries and battery systems, fuel cells, and hydrogen energy).The improvement of energy storage tank capacity is one of the most important development issues in the energy sphere too. It is because of this very promising research and application area that we are expanding the knowledge on these phenomena through fractal nature analysis. So, the results obtained in the field of electrochemical energy sources, especially in electrolyte development, are taken into account the analysis of fractal nature optimization. Based on the research field of fractal material science, particularly electronic materials, we conducted research in micro-structure fractal influence in the area of electrochemistry. We investigated the consolidation parameters of Fe2O3 redox processes. The influence of activation energy, fundamental thermodynamic parameters, and also the fractal correction of electrode surface area through complex fractal dimension with recognized grains and pores, and the Brownian motion of particles is introduced. Finally, the electrochemical Butler-Volmer equation fractalization is obtained. These results practically open new frontiers in electrochemical energy processes performed through the Arrhenius equation within electrolyte bulk and electrode relations and more complete and precise energy generation.", publisher = "Belgrade : Vinča Institute of Nuclear Sciences", journal = "Thermal Science", title = "Butler-Volmer current equation and fractal nature correction in electrochemical energy", pages = "1837-1848", volume = "25", number = "3 Part A", doi = "10.2298/TSCI200117232M", url = "https://hdl.handle.net/21.15107/rcub_dais_12391" }
Mitić, V. V., Lazović, G., Đorđević, D., Stanković, M., Paunović, V., Krstić, N.,& Manojlović, J.. (2021). Butler-Volmer current equation and fractal nature correction in electrochemical energy. in Thermal Science Belgrade : Vinča Institute of Nuclear Sciences., 25(3 Part A), 1837-1848. https://doi.org/10.2298/TSCI200117232M https://hdl.handle.net/21.15107/rcub_dais_12391
Mitić VV, Lazović G, Đorđević D, Stanković M, Paunović V, Krstić N, Manojlović J. Butler-Volmer current equation and fractal nature correction in electrochemical energy. in Thermal Science. 2021;25(3 Part A):1837-1848. doi:10.2298/TSCI200117232M https://hdl.handle.net/21.15107/rcub_dais_12391 .
Mitić, Vojislav V., Lazović, Goran, Đorđević, Dragan, Stanković, Maja, Paunović, Vesna, Krstić, Nenad, Manojlović, Jelena, "Butler-Volmer current equation and fractal nature correction in electrochemical energy" in Thermal Science, 25, no. 3 Part A (2021):1837-1848, https://doi.org/10.2298/TSCI200117232M ., https://hdl.handle.net/21.15107/rcub_dais_12391 .