磺化聚砜-聚多巴胺-ZrO2有机无机杂化复合质子交换膜的结构及性能

Chuang Chen, Feng Lin, Rong Cai, Fang Chen, Xiaoyan Ma

科研成果: 期刊稿件文章同行评审

1 引用 (Scopus)

摘要

The main obstacle of wide commercialization of proton exchange membrane is to maintain the high conductivity and low swelling ratio of proton exchange membrane at higher temperature under fully hydrated state. In order to solve this issue, by using poly-dopamine (PDA) as an intermediate layer, ZrO2 was formed on the commercial sulfonated polysulfone (PSF) porous membrane matrix, a facial approach of preparing well performed composite proton exchange membrane was proposed. The influence of PDA deposition conditions and ZrO2 mineralization process on the surface morphology and element distribution of PSF-PDA-ZrO2 composite membrane were investigated. The PSF-PDA modified membrane with PDA deposition time of 5 h was selected for mineralization. It is found that the content of Zr element on the surface mineralized layer of PSF-PDA-ZrO2 composite membranes is significantly increased with increasing mineralization time. The water uptake, swelling ratio and proton conductivity of PSF-PDA-ZrO2 composite membrane were tested. The results show that the surface of ZrO2 mineralized layer significantly inhibits the swelling ratio of PSF-PDA-ZrO2 composite membranes at higher temperature compared with PSF porous membranes, and the swelling ratio of composite membranes gradually reduces with the increase of ZrO2 mineralization time. The proton conductivity of PSF-PDA-ZrO2 composite membranes with mineralization time for 1 h, 5 h, 12 h and 24 h is higher than that of the pure PSF porous membrane, and the conductivity of the PSF-PDA-ZrO2 composite membranes decreases gradually with the increase of mineralization time. The proton conductivity of PSF-PDA-ZrO2 composite membrane after PDA deposition for 5 h and mineralization for 1 h is up to 0.117 S•cm-1 at 90℃, which is 2.5 times of the PSF porous basement membrane.

投稿的翻译标题Structure and properties of sulfonated polysulfone-poly-dopamine-ZrO2 hybrid composite proton exchange membrane
源语言繁体中文
页(从-至)2522-2529
页数8
期刊Fuhe Cailiao Xuebao/Acta Materiae Compositae Sinica
36
11
DOI
出版状态已出版 - 1 11月 2019

关键词

  • Biomimetic mineralization
  • Composite membrane
  • Poly-dopamine (PDA)
  • Porous substrate
  • Proton exchange membrane

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