Synthesis of Cross-Linked Poly(aryl Piperidinium) Anion-Exchange Membranes with Robust Alkaline and Mechanical Stability for Fuel Cell Applications

Abstract The development of alkaline-stable and mechanically robust anion-exchange membranes (AEMs) is crucial for advancing AEM-based fuel cells (AEMFCs), water electrolyzers (AEMWEs), CO2 electrolyzers (AEMCO2Es), direct ammonia fuel cells (DAFCs), and vanadium flow batteries. In this work, efficient AEMs were fabricated by chemically cross-linking quaternized poly(vinyl pyridinium) (QPVP) with quaternized poly(aryl piperidinium) (QPAP) to simultaneously enhance ionic conductivity, alkaline stability, mechanical integrity and electrochemical performance. The optimized cross-linked membrane exhibited enhanced hydroxide transport achieving a maximum conductivity of 128.4 mS cm–1 at 90 °C compared to 68.8 mS cm–1 for the pristine membrane. This improvement is attributed to the formation of a well-connected ionic network and improved phase-separated morphology induced by cross-linking. In addition, the cross-linked membranes demonstrated superior alkaline durability, retaining stable conductivity after prolonged exposure to harsh alkaline conditions. Electrochemical performance evaluation in H2/O2 AEMFC single cell showed that the optimized membrane achieved a peak power density of 0.88 W cm–2 with a current density of 2.04 A cm–2 at 80 °C significantly outperforming the pristine membrane. These results demonstrate that the cross-linked QPVP-QPAP membrane is an effective strategy for developing high-performance AEMs suitable for next-generation energy conversion and hydrogen production technologies.

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Publication Details

Journal
ACS Applied Polymer Materials
Published
2026-09-24
DOI
https://doi.org/10.1021/acsapm.6c01734
Primary Topic
Fuel Cells and Related Materials
Type
article
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article

Synthesis of Cross-Linked Poly(aryl Piperidinium) Anion-Exchange Membranes with Robust Alkaline and Mechanical Stability for Fuel Cell Applications

Ae Rhan Kim, Iyappan Arunkumar, Dong Jin Yoo, Arun Asaithambi et al.
ACS Applied Polymer Materials
Fuel Cells and Related Materials
article

Synthesis of Cross-Linked Poly(aryl Piperidinium) Anion-Exchange Membranes with Robust Alkaline and Mechanical Stability for Fuel Cell Applications

Ae Rhan Kim, Iyappan Arunkumar, Dong Jin Yoo, Arun Asaithambi, A Jeevitha, Hyun Tak Shin
article en

Abstract

Abstract The development of alkaline-stable and mechanically robust anion-exchange membranes (AEMs) is crucial for advancing AEM-based fuel cells (AEMFCs), water electrolyzers (AEMWEs), CO2 electrolyzers (AEMCO2Es), direct ammonia fuel cells (DAFCs), and vanadium flow batteries. In this work, efficient AEMs were fabricated by chemically cross-linking quaternized poly(vinyl pyridinium) (QPVP) with quaternized poly(aryl piperidinium) (QPAP) to simultaneously enhance ionic conductivity, alkaline stability, mechanical integrity and electrochemical performance. The optimized cross-linked membrane exhibited enhanced hydroxide transport achieving a maximum conductivity of 128.4 mS cm–1 at 90 °C compared to 68.8 mS cm–1 for the pristine membrane. This improvement is attributed to the formation of a well-connected ionic network and improved phase-separated morphology induced by cross-linking. In addition, the cross-linked membranes demonstrated superior alkaline durability, retaining stable conductivity after prolonged exposure to harsh alkaline conditions. Electrochemical performance evaluation in H2/O2 AEMFC single cell showed that the optimized membrane achieved a peak power density of 0.88 W cm–2 with a current density of 2.04 A cm–2 at 80 °C significantly outperforming the pristine membrane. These results demonstrate that the cross-linked QPVP-QPAP membrane is an effective strategy for developing high-performance AEMs suitable for next-generation energy conversion and hydrogen production technologies.

ACS Applied Polymer Materials
Jeonbuk National University (KR)
Affordable and clean energy
Openalex Percentile: Top 21%
Fuel Cells and Related Materials
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Synthesis of Cross-Linked Poly(aryl Piperidinium) Anion-Exchange Membranes with Robust Alkaline and Mechanical Stability for Fuel Cell Applications — Ae Rhan Kim, Iyappan Arunkumar, et al. · ACS Applied Polymer Materials (2026) | TGRS Research Map | TGRS