Rational Design of the Composite Perfluoro-Sulfonic Ionomer for High-Performance Proton Exchange Membrane Fuel Cells

T Tingting Mao (Peking University , , ,) H Haiyang Fan (Beijing Institute of Technology , , ,) Y Youxing Liu (Beijing University of Chemical Technology , , ,) Q Qinqin Li (Beijing University of Chemical Technology , , ,) C Chunyu Qiu (Xiamen University , , ,) Y Yilin Zhao Y Yucheng Wang W Wenxiu Yang (Beijing Institute of Technology , , ,) B Bingjun Xu M Mingchuan Luo (Peking University , , ,)

Abstract

Abstract Scaling proton exchange membrane fuel cells (PEMFCs) is constrained by high cathodic overpotential and platinum usage for the oxygen reduction reaction, challenges exacerbated by catalyst poisoning from perfluorosulfonic acid (PFSA) ionomers. Though compositing PFSA with additives can mitigate this poisoning, progress has remained largely empirical due to the lack of quantitative assessment tools. Here, we introduce an electrochemical probe leveraging ionomer-coated single-crystal Pt(111) to quantify the coverage and strength of PFSA adsorption, elucidating how cationic additives suppress Pt poisoning. We identify an inverse correlation between cation hydration energy and PFSA adsorption, guiding the rational design of a poorly hydrated tetramethylammonium-anchored covalent organic framework (TMA+-COFs) as an ionomer additive. Electrochemical and spectroscopic analyses reveal that the composite TMA+-COFs/PFSA layer significantly inhibits sulfonate adsorption and poisoning onto Pt(111) through robust electrostatic interactions, which translates to a 1.7- and 4-fold activity enhancement for industrial Pt/C in rotating-disk and gas-diffusion electrodes, respectively. We also demonstrated a high mass activity of 1.08 A mgPt–1 in a PEMFC cathode with TMA+-COFs. Our work provides an alternative avenue to conventional catalyst engineering through the rational design of advanced composite ionomers for high-performance, low-Pt PEMFCs.

Article Details

Volume / Issue Vol. 148, Issue 29
Published July 29, 2026
Pages 30981-30988
ISSN 0002-7863
Publisher American Chemical Society

Journal Info

Journal of the American Chemical Society

American Chemical Society

ISSN: 0002-7863 Physical Sciences

Authors (10)

T

Tingting Mao

Peking University , , ,

H

Haiyang Fan

Beijing Institute of Technology , , ,

Y

Youxing Liu

Beijing University of Chemical Technology , , ,

Q

Qinqin Li

Beijing University of Chemical Technology , , ,

C

Chunyu Qiu

Xiamen University , , ,

Y

Yilin Zhao

Y

Yucheng Wang

W

Wenxiu Yang

Beijing Institute of Technology , , ,

B

Bingjun Xu

M

Mingchuan Luo

Peking University , , ,