Chen Nanjun, Hu Chuan, Wang Ho Hyun, Kim Sun Pyo, Kim Hae Min, Lee Won Hee, Bae Joon Yong, Park Jong Hyeong, Lee Young Moo
Department of Energy Engineering, College of Engineering, Hanyang University, Seoul, 04763, Republic of Korea.
Angew Chem Int Ed Engl. 2021 Mar 29;60(14):7710-7718. doi: 10.1002/anie.202013395. Epub 2021 Feb 2.
Aryl-ether-free anion-exchange ionomers (AEIs) and membranes (AEMs) have become an important benchmark to address the insufficient durability and power-density issues associated with AEM fuel cells (AEMFCs). Here, we present aliphatic chain-containing poly(diphenyl-terphenyl piperidinium) (PDTP) copolymers to reduce the phenyl content and adsorption of AEIs and to increase the mechanical properties of AEMs. Specifically, PDTP AEMs possess excellent mechanical properties (storage modulus>1800 MPa, tensile strength>70 MPa), H fuel-barrier properties (<10 Barrer), good ion conductivity, and ex-situ stability. Meanwhile, PDTP AEIs with low phenyl content and high-water permeability display excellent peak power densities (PPDs). The present AEMFCs reach outstanding PPDs of 2.58 W cm (>7.6 A cm current density) and 1.38 W cm at 80 °C in H /O and H /air, respectively, along with a specific power (PPD/catalyst loading) over 8 W mg , which is the highest record for Pt-based AEMFCs so far.
无芳基醚阴离子交换离聚物(AEIs)和膜(AEMs)已成为解决与AEM燃料电池(AEMFCs)相关的耐久性不足和功率密度问题的重要基准。在此,我们展示了含脂肪族链的聚(二苯基 - 三联苯哌啶鎓)(PDTP)共聚物,以降低AEIs的苯基含量和吸附,并提高AEMs的机械性能。具体而言,PDTP AEMs具有优异的机械性能(储能模量>1800 MPa,拉伸强度>70 MPa)、H2阻隔性能(<10 Barrer)、良好的离子导电性和非原位稳定性。同时,具有低苯基含量和高透水性的PDTP AEIs显示出优异的峰值功率密度(PPDs)。目前的AEMFCs在80°C下,分别在H2/O2和H2/空气中达到了2.58 W cm-2(>7.6 A cm-2电流密度)和1.38 W cm-2的出色PPDs,以及超过8 W mg-1的比功率(PPD/催化剂负载量),这是迄今为止基于Pt的AEMFCs中的最高记录。