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September 16, 2025Angewandte Chemie2 citations

Quinuclidinium‐Based Microporous Anion Exchange Membranes for Water Electrolysis

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WZWenhao ZouGTGonggen TangKPKang Peng

Key Points

  • Microporous AEMs maintained 99.95% OH− conductivity after 3100 hours in extreme conditions.
  • The PTPQ-Trip membrane improved the diffusion coefficient of OH− by 1.6 times with its rigid structure.
  • An AEMWE utilizing nickel-alloy catalysts achieved 2.8 A cm−2 current density in 5 M KOH at 2.0 V.
  • The assembly demonstrated stable operation for 1400 hours, underscoring the adaptability of renewable energy methods.

Abstract

Abstract Anion exchange membrane water electrolysis (AEMWE) is a promising green hydrogen production method; however, it is constrained by the moderate OH − conductivity and inadequate alkaline stability of anion exchange membranes (AEMs). Here we report a series of quinuclidinium‐based AEMs with branched and microporous structures, achieving 99.95% OH − conductivity retention after 3100 h in 10 M NaOH at 80 °C. By tuning the rigidity of the branching units to limit chain packing, micropores were created to enhance OH − transport, which improved the diffusion coefficient of OH − by 1.6 times within the poly (terphenyl‐triptycene‐quinuclidinium) (PTPQ‐Trip) membrane having the most rigid structure. An AEMWE configured with a PTPQ‐Trip membrane and nickel‐alloy catalysts can tolerate varied alkaline concentrations and deliver a hydrogen production current density of 2.8 A cm −2 at 2.0 V in 5 M KOH, which can be continuously operated at 0.5 A cm −2 and 30 °C for over 1200 h, with intentionally included stop/start interruptions. The assembled AEMWE demonstrated stable operation for 1400 h under alternating operational current densities and varying electrolyte temperatures. This work underscores the critical role of alkaline‐resistant microporous AEMs and highlights the adaptability of AEMWE for hydrogen production using renewable electricity.

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Cite This Study

Zou et al. (2025) studied this question.

synapsesocial.com/papers/68d453a431b076d99fa599e6https://doi.org/10.1002/ange.202514264
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