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Updated: May 8, 2026

Membraneless Hydrogen Peroxide Fuel Cells as a Promising Clean Energy Source
Published on: October 20, 2023
Anion-Exchange-Membrane-Free Electrolyzers via Interfacial Microenvironment Engineering for Stable Oxygen Reduction
Gyu Yong Jang1,2, Malik Paulino1, Tae-Ung Wi1
1Department of Chemical and Biomolecular Engineering, Rice University, 6100 Main St, Houston, Texas 77005, United States.
Abstract:
Porous solid electrolyte (PSE) reactors have shown great promise for directly producing electrolyte-free products; however, the use of anion-exchange membranes (AEMs) may introduce cost and stability challenges. Here, we demonstrate an alternative AEM-free PSE reactor design that enables extended electrolysis stability and high product concentrations. By integrating a thin layer of anion-exchange resin wafer to maintain interfacial alkalinity and redesigning the gas-flow pattern in the PSE reactor to prevent cathode flooding, we achieved one-month continuous and stable electrosynthesis of hydrogen peroxide under a high current density of 200 mA cm-2, while continuously delivering a product concentration of 3.7 wt %. This AEM-free PSE reactor concept was further validated in other electrocatalytic systems, including CO2 reduction to formic acid.
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