作者:Huanhuan Chen、Ki‐Taek Bang、Ye Tian、Chuan Hu、Ran Tao、Yufei Yuan、Rui Wang、Dong‐Myeong Shin、Minhua Shao、Young Moo Lee、Yoonseob Kim
DOI:10.1002/anie.202307690
日期:2023.9.18
Ionic crosslinking is introduced into high-cationic-ratio AEMs to suppress high water uptake and swelling while further improving the hydroxide conductivity. This strategy limited the dimensional change and water uptake of the AEMs, with a high hydroxide conductivity observed. The chemical design used in this study presents a significant advancement toward developing AEMs showing high conductivity
将离子交联引入高阳离子比 AEM 中,以抑制高吸水性和膨胀,同时进一步提高氢氧化物电导率。该策略限制了 AEM 的尺寸变化和吸水量,并观察到较高的氢氧化物电导率。本研究中使用的化学设计在开发 AEM 方面取得了重大进展,该 AEM 在燃料电池应用中同时具有高导电性和稳定性。