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Advances in high-voltage supercapacitors for energy storage systems: materials and electrolyte tailoring to implementation

To achieve a zero-carbon-emission society, it is essential to increase the use of clean and renewable energy. Yet, renewable energy resources present constraints in terms of geographical locations and limited time intervals for energy generation. Therefore, there is a surging demand for developing h...

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Autores principales: Lim, Jae Muk, Jang, Young Seok, Van T. Nguyen, Hoai, Kim, Jun Sub, Yoon, Yeoheung, Park, Byung Jun, Seo, Dong Han, Lee, Kyung-Koo, Han, Zhaojun, Ostrikov, Kostya (Ken), Doo, Seok Gwang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9890941/
https://www.ncbi.nlm.nih.gov/pubmed/36756532
http://dx.doi.org/10.1039/d2na00863g
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author Lim, Jae Muk
Jang, Young Seok
Van T. Nguyen, Hoai
Kim, Jun Sub
Yoon, Yeoheung
Park, Byung Jun
Seo, Dong Han
Lee, Kyung-Koo
Han, Zhaojun
Ostrikov, Kostya (Ken)
Doo, Seok Gwang
author_facet Lim, Jae Muk
Jang, Young Seok
Van T. Nguyen, Hoai
Kim, Jun Sub
Yoon, Yeoheung
Park, Byung Jun
Seo, Dong Han
Lee, Kyung-Koo
Han, Zhaojun
Ostrikov, Kostya (Ken)
Doo, Seok Gwang
author_sort Lim, Jae Muk
collection PubMed
description To achieve a zero-carbon-emission society, it is essential to increase the use of clean and renewable energy. Yet, renewable energy resources present constraints in terms of geographical locations and limited time intervals for energy generation. Therefore, there is a surging demand for developing high-performance energy storage systems (ESSs) to effectively store the energy during the peak time and use the energy during the trough period. To this end, supercapacitors hold great promise as short-term ESSs for rapid power recovery or frequency regulation to improve the quality and reliability of power supply. In particular, the electrical double layer capacitor (EDLC) which offers long and stable cycle retention, high power densities, and fast charge/discharge characteristics with a moderate operating voltage window, is a suitable candidate. Yet, for implementation of the EDLC in ESSs, further research effort is required in terms of increasing the operating voltage and energy densities while maintaining the long-term cycle stability and power densities which are desirable aspects for ESS operation. Here, we examine the advances in EDLC research to achieve a high operating voltage window along with high energy densities, covering from materials and electrolytes to long-term device perspectives for next-generation supercapacitor-based ESSs.
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spelling pubmed-98909412023-02-07 Advances in high-voltage supercapacitors for energy storage systems: materials and electrolyte tailoring to implementation Lim, Jae Muk Jang, Young Seok Van T. Nguyen, Hoai Kim, Jun Sub Yoon, Yeoheung Park, Byung Jun Seo, Dong Han Lee, Kyung-Koo Han, Zhaojun Ostrikov, Kostya (Ken) Doo, Seok Gwang Nanoscale Adv Chemistry To achieve a zero-carbon-emission society, it is essential to increase the use of clean and renewable energy. Yet, renewable energy resources present constraints in terms of geographical locations and limited time intervals for energy generation. Therefore, there is a surging demand for developing high-performance energy storage systems (ESSs) to effectively store the energy during the peak time and use the energy during the trough period. To this end, supercapacitors hold great promise as short-term ESSs for rapid power recovery or frequency regulation to improve the quality and reliability of power supply. In particular, the electrical double layer capacitor (EDLC) which offers long and stable cycle retention, high power densities, and fast charge/discharge characteristics with a moderate operating voltage window, is a suitable candidate. Yet, for implementation of the EDLC in ESSs, further research effort is required in terms of increasing the operating voltage and energy densities while maintaining the long-term cycle stability and power densities which are desirable aspects for ESS operation. Here, we examine the advances in EDLC research to achieve a high operating voltage window along with high energy densities, covering from materials and electrolytes to long-term device perspectives for next-generation supercapacitor-based ESSs. RSC 2023-01-09 /pmc/articles/PMC9890941/ /pubmed/36756532 http://dx.doi.org/10.1039/d2na00863g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Lim, Jae Muk
Jang, Young Seok
Van T. Nguyen, Hoai
Kim, Jun Sub
Yoon, Yeoheung
Park, Byung Jun
Seo, Dong Han
Lee, Kyung-Koo
Han, Zhaojun
Ostrikov, Kostya (Ken)
Doo, Seok Gwang
Advances in high-voltage supercapacitors for energy storage systems: materials and electrolyte tailoring to implementation
title Advances in high-voltage supercapacitors for energy storage systems: materials and electrolyte tailoring to implementation
title_full Advances in high-voltage supercapacitors for energy storage systems: materials and electrolyte tailoring to implementation
title_fullStr Advances in high-voltage supercapacitors for energy storage systems: materials and electrolyte tailoring to implementation
title_full_unstemmed Advances in high-voltage supercapacitors for energy storage systems: materials and electrolyte tailoring to implementation
title_short Advances in high-voltage supercapacitors for energy storage systems: materials and electrolyte tailoring to implementation
title_sort advances in high-voltage supercapacitors for energy storage systems: materials and electrolyte tailoring to implementation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9890941/
https://www.ncbi.nlm.nih.gov/pubmed/36756532
http://dx.doi.org/10.1039/d2na00863g
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