当前位置: 中文主页 >> 研究成果 >> 论文成果
论文成果

A highly proton-conductive and vanadium-rejected long-side-chain sulfonated polybenzimidazole membrane for redox flow battery

发表时间:2020-02-22
点击次数:
论文类型:
期刊论文
第一作者:
Yan, Xiaoming
通讯作者:
He, GH (reprint author), Dalian Univ Technol, Sch Petr & Chem Engn, Sch Chem Engn, State Key Lab Fine Chem, 2 Dagong Rd, Panjin 124221, LN, Peoples R China.
合写作者:
Wang, Jinyan,He, Gaohong,Dong, Ziwei,Di, Mengting,Hu, Lei,Zhang, Caimian,Pan, Yu,Zhang, Ning,Jiang, Xiaobin,Wu, Xuemei
发表时间:
2020-02-15
发表刊物:
JOURNAL OF MEMBRANE SCIENCE
收录刊物:
EI、SCIE
文献类型:
J
卷号:
596
ISSN号:
0376-7388
关键字:
Sulfonated long side chain; Polybenzimidazole; Vanadium redox flow battery; 1; 3-Propanesultone
摘要:
A long-side-chain sulfonated polybenzimidazole (PBI-PS) membrane was successfully prepared by the reaction of PBI with 1, 3-propanesultone for improving the efficiencies of vanadium redox flow battery. The interaction between sulfonic acid and imidazole groups provides the PBI-PS membrane with excellent swelling resistance, leading to a swelling ratio of only 13% for the membrane with IEC of as high as 3.18 mmol g(-1). This results in an ultra-low vanadium permeability (6.5 x 10(-9) cm(2) s(-1)). The introduction of sulfonic acid-terminated flexible side chain in the membrane also constructs good microphase separation structure, leading to a low area resistance of 0.51 Omega cm(2), which is close to Nafion 212 (0.41 Omega cm(2)). This membrane exhibits excellent cell performance. The voltage and energy efficiencies are up to 90.73% and 89.13% at 80 mA cm(-2), respectively. Furthermore, the efficiencies remain constant values for 200 cycles, and no changes in chemical structure and cell efficiencies are observed after 720 h immersion in electrolyte solution.
是否译文:

辽ICP备05001357号  地址:中国·辽宁省大连市甘井子区凌工路2号 邮编:116024 版权所有:大连理工大学


访问量:    最后更新时间:..