Open AccessChemistryEnvironmental ScienceMaterials Science

Robert B. Kutz, Qingmei Chen, Hongzhou Yang, Syed D. Sajjad, Zengcai Liu, I. Richard Masel

2017.6.1Energy Technology

DOI: 10.1002/ente.201600636

tlooto Summary

The synthesis and testing of a series of new anion-conductive membranes that incorporate the functional character of imidazolium-based ionic liquids as co-catalysts in CO2 reduction into a solid membrane with a styrene backbone are reported.

Abstract

CO 2 electrolysis is a key step in CO 2 conversion into fuels and chemicals as a way of mitigating climate change. We report the synthesis and testing of a series of new anion‐conductive membranes (tradenamed SustainionTM) for use in CO 2 electrolysis. These membranes incorporate the functional character of imidazolium‐based ionic liquids as co‐catalysts in CO 2 reduction into a solid membrane with a styrene backbone. We find that the addition of an imidazolium group onto the styrene side‐chains increases the selectivity of the reaction from approximately 25 % to approximately 95 %. The current at 3 V is increased by a factor of 14. So far we have been able to tune these parameters to achieve stable cells that provide current densities higher than 100 mA cm −2 at 3 V cell potential with a CO product selectivity over 98 %. Stable performance was observed for 6 months of continuous operation (>150 000 000 turnovers). These results demonstrate that imidazolium polymers are ideal membranes for CO 2 electrolysis.

Citation format

KUTZ, Robert B., et al. Sustainion imidazolium‐functionalized polymers for carbon dioxide electrolysis. Energy Technology, 2017, 5: 929–936.