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Updated: Jan 9, 2026

Solar-Driven Electrochemical Green Fuel Production from CO2 and Water Using Ti3C2Tx MXene-Supported CuZn and NiCo Catalysts
Published on: November 7, 2025
Free-Standing Porous Composite Polyelectrolyte for Efficient CO2 Electrolysis
Sarah Adaryan1, Tae-Ung Wi1, Katrina Santos2
1Chemical and Biomolecular Engineering, Rice University, Houston, Texas 77005-1892, United States.
Abstract:
Conventional CO2 reduction electrolyzers typically employ liquid-based electrolytes, resulting in expensive postsynthesis purification steps to recover the product. Solid-state reactors address product separation challenges, but current particle-based solid electrolytes face issues with long-term stability, scalability, reusability, and challenging cell assembly. Here, we report a free-standing and highly conductive porous composite polyelectrolyte for CO2 electrolysis produced by combining ion-exchange particles with sulfonated polysulfone as a binder. The resulting composite polyelectrolyte achieves an ionic conductivity as high as 10.4 mS cm-1 while maintaining excellent mechanical properties. When used in a CO2 electrolyzer, formate selectivity consistently exceeded 90% at current densities up to 200 mA cm-2, and the electrolyzer maintained a cell potential close to 3.5 V over 220 h at 100 mA cm-2. Technoeconomic and life cycle assessments further highlight the scalability and sustainability of this approach, advancing the development of large-scale, energy-efficient solid-state CO2 electrolyzers.
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