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用于高性能质子交换膜燃料电池的阶梯型磺化聚(亚芳基全氟亚烷基)

Ladder-type sulfonated poly(arylene perfluoroalkylene)s for high performance proton exchange membrane fuel cells.

作者信息

Long Zhi, Miyake Junpei, Miyatake Kenji

机构信息

Clean Energy Research Center, University of Yamanashi 4 Takeda Kofu Yamanashi 400-8510 Japan

Fuel Cell Nanomaterials Center, University of Yamanashi 4-3 Takeda Kofu 400-8511 Japan.

出版信息

RSC Adv. 2020 Nov 11;10(67):41058-41064. doi: 10.1039/d0ra08630d. eCollection 2020 Nov 9.

Abstract

Sulfonated poly(arylene perfluoroalkylene)s containing a sulfone-bonded ladder structure (SPAF-P-Lad) were synthesized by treating the precursor SPAF-P polymers with oleum as a novel proton exchange membrane for fuel cells. SPAF-P-Lad membranes had excellent solubility in polar organic solvents and high molecular weight ( = 145.4-162.9 kDa, = 356.9-399.1 kDa) to provide bendable membranes with ion exchange capacity (IEC) ranging from 1.76 to 2.01 meq. g. SPAF-P-Lad membranes possessed higher proton conductivity than that of the precursor SPAF-P membranes because of the stronger water affinity. Compared with SPAF-P membranes ( : 72-90 °C, Young's modulus: 0.08-0.42 GPa; yield stress: 5.7-15.1 MPa), SPAF-P-Lad membranes showed better mechanical stability to humidity and temperature and improved tensile properties (Young's modulus: 0.51-0.59 GPa; yield stress: 23.9-29.6 MPa). The selected membrane, SPAF-P-Lad, exhibited improved fuel cell performance, in particular, under low humidity with air; the current density at 0.5 V was 0.56 A cm, while that for SPAF-P was 0.46 A cm. The SPAF-P-Lad membrane endured an open circuit voltage hold test for 1000 h with average decay of as small as 70 μV h. A series of post-analyses including current-voltage characteristics, molecular structure, molecular weight, and IEC suggested very minor degradation of the membrane under the accelerated testing conditions.

摘要

通过用发烟硫酸处理前体SPAF-P聚合物,合成了含有砜键梯形结构的磺化聚(亚芳基全氟亚烷基)(SPAF-P-Lad),作为一种新型的燃料电池质子交换膜。SPAF-P-Lad膜在极性有机溶剂中具有优异的溶解性和高分子量(重均分子量Mw = 145.4 - 162.9 kDa,数均分子量Mn = 356.9 - 399.1 kDa),以提供离子交换容量(IEC)范围为1.76至2.01 meq·g的可弯曲膜。由于更强的水亲和力,SPAF-P-Lad膜比前体SPAF-P膜具有更高的质子传导率。与SPAF-P膜相比(玻璃化转变温度Tg:72 - 90°C,杨氏模量:0.08 - 0.42 GPa;屈服应力:5.7 - 15.1 MPa),SPAF-P-Lad膜对湿度和温度表现出更好的机械稳定性,并改善了拉伸性能(杨氏模量:0.51 - 0.59 GPa;屈服应力:23.9 - 29.6 MPa)。所选的SPAF-P-Lad膜表现出改善的燃料电池性能,特别是在低湿度和空气条件下;在0.5 V时的电流密度为0.56 A/cm²,而SPAF-P的电流密度为0.46 A/cm²。SPAF-P-Lad膜在开路电压保持测试中持续1000小时,平均衰减小至70 μV/h。包括电流 - 电压特性、分子结构、分子量和IEC在内的一系列后分析表明,在加速测试条件下膜的降解非常轻微。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11b8/9057728/d456aaa4546f/d0ra08630d-s1.jpg

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