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      Understanding the Role of Electrode Thickness on Redox Flow Cell Performance**

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          Abstract

          The electrode thickness is a critical design parameter to engineer high performance redox flow cells by impacting the available surface area for reactions, current and potential distributions, and required pumping power. To date, redox flow cell assemblies employ repurposed off‐the‐shelf fibrous electrodes which feature a broad range of thicknesses. However, comprehensive guidelines to select the optimal electrode thickness for a given reactor architecture remain elusive. Here, we investigate the effect of the electrode thickness in the range of 200–1100 μm on the cell performance by stacking electrode layers in four different flow cell configurations – Freudenberg paper and ELAT cloth electrodes combined with flow‐through and interdigitated flow fields. We employ a suite of polarization, electrochemical impedance spectroscopy and pressure drop measurements together with pore network modeling simulations to correlate the electrode thickness for various reactor designs to the electrochemical and hydraulic performance. We find that thicker electrodes (420 μm paper electrodes and 812 μm cloth electrodes) are beneficial in combination with flow‐through flow fields, whereas when using interdigitated flow fields, thinner electrodes (210 μm paper electrodes and 406 μm cloth electrodes) result in a better current density and pressure drop trade‐off. We hope our findings will aid researchers and technology practitioners in designing their electrochemical flow cells under convective operation.

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          Opportunities and challenges for a sustainable energy future.

          Access to clean, affordable and reliable energy has been a cornerstone of the world's increasing prosperity and economic growth since the beginning of the industrial revolution. Our use of energy in the twenty-first century must also be sustainable. Solar and water-based energy generation, and engineering of microbes to produce biofuels are a few examples of the alternatives. This Perspective puts these opportunities into a larger context by relating them to a number of aspects in the transportation and electricity generation sectors. It also provides a snapshot of the current energy landscape and discusses several research and development opportunities and pathways that could lead to a prosperous, sustainable and secure energy future for the world.
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            Redox flow batteries: a review

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              A review of energy storage types, applications and recent developments

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                Author and article information

                Contributors
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                Journal
                ChemElectroChem
                ChemElectroChem
                Wiley
                2196-0216
                2196-0216
                January 15 2024
                December 27 2023
                January 15 2024
                : 11
                : 2
                Affiliations
                [1 ] Department of Thermal and Fluids Engineering Universidad Carlos III de Madrid 28911 -Leganés Spain
                [2 ] Electrochemical Materials and Systems Department of Chemical Engineering and Chemistry Eindhoven University of Technology Eindhoven 5600 MB The Netherlands
                Article
                10.1002/celc.202300380
                e560b470-ec78-43d5-aeb0-03927d1fe2db
                © 2024

                http://creativecommons.org/licenses/by/4.0/

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