材料科学
质子
膜
热传导
化学物理
质子交换膜燃料电池
电导率
Nafion公司
质子输运
纳米技术
聚酰亚胺
分子物理学
相对湿度
兴奋剂
活化能
电流密度
化学工程
电子传输链
导电体
功率密度
电流(流体)
作者
Juntao Li,Xinyue Li,Niu Hu,Mengqiong Jiao,T. X. Jiang,Meiqi Gao,Wenpen Li,Yarong Liu,Jing Cui,Zhirong Yang,Jingtao Wang
出处
期刊:Small
[Wiley]
日期:2026-02-18
卷期号:22 (23): e14790-e14790
被引量:1
标识
DOI:10.1002/smll.202514790
摘要
ABSTRACT Achieving high proton conduction in proton exchange membranes (PEMs) at low relative humidity (RH) remains challenging due to the suppression of the Grotthuss mechanism. Engineering microphase separation with aligned hopping sites is an effective strategy to drive the mechanism shift, yet simultaneously maintaining membrane durability remains difficult. Here, we propose a hierarchical self‐assembly strategy that precisely introduces guest hopping sites into the microphase‐separated region without damaging the membrane's durability. By regulating the polyimide (PI) doping level in sulfonated polyetheretherketone (SPEEK) membranes, an optimal balance of proton conduction and stability is achieved at a bridged ─N─…SO 3 H─ acid–base pair ratio of 13%. Precise hybridization of acid–base hydrogen‐bonded organic frameworks (ABHOFs) into microphase‐separated regions constructs guest acid–base pair sites and promotes the ordered arrangement of host sites. Spatial alignment of guest‐host hopping sites creates long‐range and low‐resistance channels. Both site and energy matching enable a transition from vehicle‐mediated to Grotthuss mechanisms under low RH. The resulting SP/PI@ABHOF membranes exhibit high proton conductivities of 193.6/50.8 mS cm − 1 at 80°C under 100%/20% RH, with peak power densities reaching 1221.2/419.6 mW cm − 2 . Significant enhancements in mechanical strength, cyclic stability, and hydrogen‐permeation current density were also achieved, surpassing the performance of benchmark PEMs, including Nafion 212 and GORE membranes.
科研通智能强力驱动
Strongly Powered by AbleSci AI