Direct Insertion Polymerization of Ionic Monomers: Rapid Production of Anion Exchange Membranes

Author:

Hsu Jesse H.1ORCID,Peltier Cheyenne R.1ORCID,Treichel Megan2ORCID,Gaitor Jamie C.2,Li Qihao1ORCID,Girbau Renee1,Macbeth Alexandra J.1ORCID,Abruña Héctor D.1ORCID,Noonan Kevin J. T.2ORCID,Coates Geoffrey W.1ORCID,Fors Brett P.1ORCID

Affiliation:

1. Department of Chemistry and Chemical Biology Cornell University Ithaca NY 14853 USA

2. Department of Chemistry Carnegie Mellon University Pittsburgh PA 15213 USA

Abstract

AbstractThe limited number of methods to directly polymerize ionic monomers currently hinders rapid diversification and production of ionic polymeric materials, namely anion exchange membranes (AEMs) which are essential components in emerging alkaline fuel cell and electrolyzer technologies. Herein, we report a direct coordination‐insertion polymerization of cationic monomers, providing the first direct synthesis of aliphatic polymers with high ion incorporations and allowing facile access to a broad range of materials. We demonstrate the utility of this method by rapidly generating a library of solution processable ionic polymers for use as AEMs. We investigate these materials to study the influence of cation identity on hydroxide conductivity and stability. We found that AEMs with piperidinium cations exhibited the highest performance, with high alkaline stability, hydroxide conductivity of 87 mS cm−1 at 80 °C, and a peak power density of 730 mW cm−2 when integrated into a fuel cell device.

Funder

U.S. Department of Energy

National Science Foundation

Publisher

Wiley

Subject

General Chemistry,Catalysis

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