Poly(Styrene-b-Isobutylene-b-Styrene) (SIBS)-Based Comb-Shaped Anion Exchange Membranes for Alkaline Fuel Cell with Three-Dimensional Ordered Phase Separation and Enhanced Conductivity
Cuizhi Zhang
1, 2, 3, 4
,
Hongfu Lv
1, 2, 3, 4
,
Hong Lv
3, 4
,
Kai Wang
3, 4
,
Pengda Sun
1, 2, 3, 4
,
Peng Fei Sun
3, 4
,
Shaojie Liu
1, 2, 3, 4
,
Xiaomeng Chu
1, 2, 3, 4
,
Miao Yuan
1, 2, 3, 4
,
Y. Miao
3, 4
,
Nanwen Li
5, 6, 7, 8
,
Song Zhao
9, 10
1
College of Chemical & Pharmaceutical Engineering
3
College of Chemical & Pharmaceutical Engineering, Shijiazhuang, China
|
5
State Key Laboratory of Coal Conversion
7
State Key Laboratory of Coal Conversion, Taiyuan, China
|
9
Hebei Provincial Technology Innovation Center of Oil Resource Utilization, Shijiazhuang, China
|
10
Hebei Jingu Renewable Resources Development Co., Ltd., Shijiazhuang, China
|
Тип публикации: Journal Article
Дата публикации: 2025-03-07
scimago Q1
wos Q1
БС1
SJR: 0.981
CiteScore: 6.9
Impact factor: 4.7
ISSN: 26376105
Краткое описание
Polymers backbones with free of aryl-ether structures are preferred for producing stable anion exchange membranes (AEMs) suitable for alkaline fuel cells. In this study, we utilized the inert all-hydrocarbon polymer poly(styrene-b-isobutylene-b-styrene) (SIBS) as the polymer backbone and integrated tertiary amines with varying carbon chain lengths to synthesize alkaline stable comb-shaped AEMs via halogenation and the Menschutkin reaction. The synthesized QSIBS–OH-Cn membranes demonstrated remarkable film-forming capabilities and mechanical properties, and SAXS analysis revealed the presence of distinct hydrophilic and hydrophobic microphase separation structures, which promote the self-assembly of ion clusters, resulting in the formation of interconnected ion transport pathways within the membrane. Therefore, the QSIBS–OH-Cn membranes demonstrated a significant enhancement in hydroxide conductivity, reaching up to 104 mS cm–1 at 80 °C, a marked improvement over their poly(phenylene oxide)-based equivalents. Furthermore, the QSIBS–OH-Cn membranes exhibited remarkable alkaline stability, maintaining over 92% of their conductivity after 1800 h at 80 °C in a 1 M NaOH solution, underscoring the significance of the polymer backbone and the com-shaped molecular architecture. Finally, the QSISBS–OH-Cn and QPPO–OH-Cn membranes were utilized in single alkaline fuel cells operating with H2/O2 at 60 °C, where the QSIBS–OH–C12 membrane demonstrated a peak power density of 537 mW cm–2 at a current density of 670 mA cm–2. Moreover, the QSIBS–OH–C6 and QSIBS–OH–C12 membranes displayed their stability across the durability tests of fuel cell for over 120 h with 0.3 V constant voltage. Overall, this study emphasizes the significance of the SIBS thermoplastic triblock polymer as a backbone and the integration of comb-shaped molecular architectures in developing robust AEMs, offering a strategic method for optimizing the molecular design of AEMs.
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Zhang C. et al. Poly(Styrene-b-Isobutylene-b-Styrene) (SIBS)-Based Comb-Shaped Anion Exchange Membranes for Alkaline Fuel Cell with Three-Dimensional Ordered Phase Separation and Enhanced Conductivity // ACS Applied Polymer Materials. 2025. Vol. 7. No. 6. pp. 3892-3903.
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Zhang C., Lv H., Lv H., Wang K., Sun P., Sun P. F., Liu S., Chu X., Yuan M., Miao Y., Li N., Zhao S. Poly(Styrene-b-Isobutylene-b-Styrene) (SIBS)-Based Comb-Shaped Anion Exchange Membranes for Alkaline Fuel Cell with Three-Dimensional Ordered Phase Separation and Enhanced Conductivity // ACS Applied Polymer Materials. 2025. Vol. 7. No. 6. pp. 3892-3903.
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TY - JOUR
DO - 10.1021/acsapm.5c00131
UR - https://pubs.acs.org/doi/10.1021/acsapm.5c00131
TI - Poly(Styrene-b-Isobutylene-b-Styrene) (SIBS)-Based Comb-Shaped Anion Exchange Membranes for Alkaline Fuel Cell with Three-Dimensional Ordered Phase Separation and Enhanced Conductivity
T2 - ACS Applied Polymer Materials
AU - Zhang, Cuizhi
AU - Lv, Hongfu
AU - Lv, Hong
AU - Wang, Kai
AU - Sun, Pengda
AU - Sun, Peng Fei
AU - Liu, Shaojie
AU - Chu, Xiaomeng
AU - Yuan, Miao
AU - Miao, Y.
AU - Li, Nanwen
AU - Zhao, Song
PY - 2025
DA - 2025/03/07
PB - American Chemical Society (ACS)
SP - 3892-3903
IS - 6
VL - 7
SN - 2637-6105
ER -
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@article{2025_Zhang,
author = {Cuizhi Zhang and Hongfu Lv and Hong Lv and Kai Wang and Pengda Sun and Peng Fei Sun and Shaojie Liu and Xiaomeng Chu and Miao Yuan and Y. Miao and Nanwen Li and Song Zhao},
title = {Poly(Styrene-b-Isobutylene-b-Styrene) (SIBS)-Based Comb-Shaped Anion Exchange Membranes for Alkaline Fuel Cell with Three-Dimensional Ordered Phase Separation and Enhanced Conductivity},
journal = {ACS Applied Polymer Materials},
year = {2025},
volume = {7},
publisher = {American Chemical Society (ACS)},
month = {mar},
url = {https://pubs.acs.org/doi/10.1021/acsapm.5c00131},
number = {6},
pages = {3892--3903},
doi = {10.1021/acsapm.5c00131}
}
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Zhang, Cuizhi, et al. “Poly(Styrene-b-Isobutylene-b-Styrene) (SIBS)-Based Comb-Shaped Anion Exchange Membranes for Alkaline Fuel Cell with Three-Dimensional Ordered Phase Separation and Enhanced Conductivity.” ACS Applied Polymer Materials, vol. 7, no. 6, Mar. 2025, pp. 3892-3903. https://pubs.acs.org/doi/10.1021/acsapm.5c00131.