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June 1, 2026Fuel Cells10 citations

Quaternary Ammonium‐Functionalized Siloxane Semi‐IPN for SPEEK Membranes: Decoupling the Conductivity–Stability Trade‐Off

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CZChuyu ZhouDCDidi ChuWZWenxing Zeng

Key Points

  • This research aims to enhance proton conductivity and stability in SPEEK membranes by employing a quaternary ammonium-functionalized siloxane semi-IPN.
  • Developed a quaternary ammonium-functionalized siloxane semi-IPN within a SPEEK matrix
  • Characterized the membranes' performance at 80°C
  • Measured peak conductivity and power density in a single fuel cell
  • The optimized membrane (GTM-2) showed a peak conductivity of 277.8 mS cm −1 at 80°C
  • Achieved a power density of 746.26 mW·cm −2 in a single fuel cell
  • Maintained mechanical strength of 23.3 MPa.

Abstract

ABSTRACT Balancing high proton conductivity with dimensional stability remains a persistent “trade‐off” for sulfonated poly(ether ether ketone) (SPEEK) electrolytes. Herein, an amine‐triggered self‐catalyzed strategy is reported to construct a quaternary ammonium‐functionalized siloxane semi‐interpenetrating polymer network (semi‐IPN) within SPEEK matrix. The in‐situ formed rigid Si─O─Si scaffold effectively confines membrane swelling, while the tethered quaternary ammonium sites synergistically facilitate efficient proton hopping through acid–base interactions with sulfonic acid groups. The optimized membrane (GTM‐2) yields a peak conductivity of 277.8 mS cm −1 at 80°C, achieves a power density of 746.26 mW·cm −2 in a single fuel cell. Moreover, the semi‐IPN membranes maintain favorable mechanical strength (up to 23.3 MPa). This architectural design provides a robust pathway for developing high‐performance, non‐fluorinated proton exchange membranes.

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Cite This Study

Zhou et al. (2026) studied this question.

synapsesocial.com/papers/6a1d22bb02fbce913063865ahttps://doi.org/10.1002/fuce.70115
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