Poly(fluorenyl aryl piperidinium) membranes and ionomers for anion exchange membrane fuel cells

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作者
Nanjun Chen
Ho Hyun Wang
Sun Pyo Kim
Hae Min Kim
Won Hee Lee
Chuan Hu
Joon Yong Bae
Eun Seob Sim
Yong-Chae Chung
Jue-Hyuk Jang
Sung Jong Yoo
Yongbing Zhuang
Young Moo Lee
机构
[1] Hanyang University,Department of Energy Engineering, College of Engineering
[2] Hanyang University,Department of Materials Science and Engineering, College of Engineering
[3] Korea Institute of Science and Technology (KIST),Hydrogen Fuel Cell Research Center
[4] Chinese Academy of Sciences,State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, University of Chinese Academy of Sciences
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Low-cost anion exchange membrane fuel cells have been investigated as a promising alternative to proton exchange membrane fuel cells for the last decade. The major barriers to the viability of anion exchange membrane fuel cells are their unsatisfactory key components—anion exchange ionomers and membranes. Here, we present a series of durable poly(fluorenyl aryl piperidinium) ionomers and membranes where the membranes possess high OH− conductivity of 208 mS cm−1 at 80 °C, low H2 permeability, excellent mechanical properties (84.5 MPa TS), and 2000 h ex-situ durability in 1 M NaOH at 80 °C, while the ionomers have high water vapor permeability and low phenyl adsorption. Based on our rational design of poly(fluorenyl aryl piperidinium) membranes and ionomers, we demonstrate alkaline fuel cell performances of 2.34 W cm−2 in H2-O2 and 1.25 W cm−2 in H2-air (CO2-free) at 80 °C. The present cells can be operated stably under a 0.2 A cm−2 current density for ~200 h.
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