Modified Membranes for Redox Flow Batteries—A Review

Author:

Tsehaye Misgina Tilahun1ORCID,Tufa Ramato Ashu2ORCID,Berhane Roviel2,Deboli Francesco3,Gebru Kibrom Alebel4,Velizarov Svetlozar5ORCID

Affiliation:

1. Separation and Conversion Technology, Flemish Institute for Technological Research (VITO), Boeretang 200, 2400 Mol, Belgium

2. Department of Environmental Engineering, University of Calabria (DIAm-UNICAL), Via P. Bucci CUBO 44/A, 87036 Rende, Italy

3. Department of Chemical Engineering, KU Leuven, Celestijnenlaan 200F, 3001 Leuven, Belgium

4. Lehrstuhl für Technische Chemie II, University of Duisburg-Essen, 45141 Essen, Germany

5. LAQV-REQUIMTE, Chemistry Department, NOVA School of Science and Technology (FCT NOVA), Universidade Nova de Lisboa, 2829-516 Caparica, Portugal

Abstract

In this review, the state of the art of modified membranes developed and applied for the improved performance of redox flow batteries (RFBs) is presented and critically discussed. The review begins with an introduction to the energy-storing chemical principles and the potential of using RFBs in the energy transition in industrial and transport-related sectors. Commonly used membrane modification techniques are briefly presented and compared next. The recent progress in applying modified membranes in different RFB chemistries is then critically discussed. The relationship between a given membrane modification strategy, corresponding ex situ properties and their impact on battery performance are outlined. It has been demonstrated that further dedicated studies are necessary in order to develop an optimal modification technique, since a modification generally reduces the crossover of redox-active species but, at the same time, leads to an increase in membrane electrical resistance. The feasibility of using alternative advanced modification methods, similar to those employed in water purification applications, needs yet to be evaluated. Additionally, the long-term stability and durability of the modified membranes during cycling in RFBs still must be investigated. The remaining challenges and potential solutions, as well as promising future perspectives, are finally highlighted.

Publisher

MDPI AG

Subject

Filtration and Separation,Chemical Engineering (miscellaneous),Process Chemistry and Technology

Reference79 articles.

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3. The Chemistry of Redox-Flow Batteries;Noack;Angew. Chem. Int. Ed.,2015

4. Sayed, E.T., Shehata, N., Abdelkareem, M.A., Ramadan, M., and Olabi, A.-G. (2022). Encyclopedia of Smart Materials, Elsevier.

5. Redox Species of Redox Flow Batteries: A Review;Pan;Molecules,2015

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