Deep eutectic solvents as green and cost-effective supercapacitor electrolytes

Edited book (chapter)


Padwal, Chinmayee, Pham, Hong Duc, Hoang, Linh Thi My, Mundree, Sagadevan and Dubal, Deepak P.. 2024. "Deep eutectic solvents as green and cost-effective supercapacitor electrolytes." Krishnan, Syam G., Pham, Hong Duc and Dubal, Deepak P. (ed.) Supercapacitors: Materials, Design, and Commercialization. Elsevier. pp. 317-329
Chapter Title

Deep eutectic solvents as green and cost-effective supercapacitor electrolytes

Book Chapter CategoryEdited book (chapter)
Book TitleSupercapacitors: Materials, Design, and Commercialization
AuthorsPadwal, Chinmayee, Pham, Hong Duc, Hoang, Linh Thi My, Mundree, Sagadevan and Dubal, Deepak P.
EditorsKrishnan, Syam G., Pham, Hong Duc and Dubal, Deepak P.
Page Range317-329
Chapter Number13
Number of Pages13
Year2024
PublisherElsevier
ISBN9780443154782
Digital Object Identifier (DOI)https://doi.org/10.1016/B978-0-443-15478-2.00016-4
Web Address (URL)https://www.sciencedirect.com/science/article/abs/pii/B9780443154782000164
AbstractDeep eutectic solvents (DESs) have attracted widespread attention as a tempting and capable alternative to traditional electrolytes in energy storage system, particularly in terms of aqueous supercapacitors (SCs). Following the strategy of using eco-friendly and nonflammable electrolyte, low cost, and simple synthesis are other advantages for DESs. They also offer the possibility to construct aqueous all-climate SCs. This chapter comprehensively examines the recent developments and applications of eutectic solvents as electrolytes for SCs. It discusses the unique properties of DESs, their advantages, and challenges, and highlights their potential to enhance the performance and sustainability of SC devices. The chapter also sheds light on the ongoing research efforts and future directions in this rapidly evolving field.
KeywordsDeep eutectic solvents
Contains Sensitive ContentDoes not contain sensitive content
ANZSRC Field of Research 2020340604. Electrochemistry
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Byline AffiliationsQueensland University of Technology
Centre for Future Materials
University of Queensland
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