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Poly(sulfonated phenylene)-block-poly(arylene ether sulfone) copolymer for polymer electrolyte fuel cell application

机译:聚合物电解质燃料电池用聚(磺化亚苯基)嵌段-聚(亚芳基醚砜)共聚物

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摘要

Novel poly(2-(3-sulfo)benzoyl-1,4-phenylene)-block-poly(arylene ether sulfone) copolymers (PSP-b-PAESs) were successfully synthesized by Ni(0)-catalyzed copolymerization of 2,5-dichloro-3~′-sulfo-benzophenone (DCSB) and chlorobenzophenone-endcapped oligo(arylene ether sulfone). Their physical property, morphology and polymer electrolyte fuel cell (PEFC) performance were investigated compared to those of the DCSB-based random copolymers and Nafion112. PSP-b-PAES with a measured ion exchange capacity (IEC) of 1.82 meq g~(-1), of which the hydrophilic/hydrophobic block lengths were evaluated as 17/8.4, showed the relatively small number of water molecules sorbed per sulfonic acid group (λ = 15) in water and the anisotropic membrane swelling with 2.4 times larger through-plane swelling than in-plane one, whereas it showed the almost isotropic proton conductivity. The PSP-b-PAES exhibited a microphase-separated structure composed of hydrophobic and hydrophilic domains, whereas the random copolymers exhibited a homogenous morphology. The PSP-b-PAES had the larger proton conductivity than the random copolymer with an IEC of 2.01 meq g~(-1), especially under the low relative humidities. Even at a low humidification of 17% RH at 90 °C and 0.2 MPa, the PSP-b-PAES exhibited the high PEFC performance; namely, cell voltage of 0.69 V at load current density of 0.5 A cm~(-2) and maximum output of 0.73 W cm~(-2), which were much higher than those at 30% RH for the random copolymer (0.65 V and 0.51 W cm~(-2)) and Nafion112 (0.70 V and 0.61 W cm~(-2)). The PSP-b-PAES showed the fairly high durability of 750 h under PEFC operation at 90 °C in spite of the relatively low molecular weight. PSP-b-PAESs have the high potential as polymer electrolyte membrane for PEFC applications.
机译:通过Ni(0)催化2,5的共聚反应成功合成了新型的聚(2-(3-磺基)苯甲酰基-1,4-亚苯基)-嵌段-聚(亚芳基醚砜)共聚物(PSP-b-PAESs) -二氯-3〜'-磺基二苯甲酮(DCSB)和氯苯甲酮封端的低聚(亚芳基醚砜)。与基于DCSB的无规共聚物和Nafion112的物理性能,形态和聚合物电解质燃料电池(PEFC)性能进行了比较。测定离子交换容量(IEC)为1.82 meq g〜(-1)的PSP-b-PAES,其中亲水/疏水嵌段长度为17 / 8.4,表明每个磺酸吸附的水分子数量相对较少水中的酸性基团(λ= 15)和各向异性膜膨胀,通透面膨胀是平面内膨胀的2.4倍,而它却表现出几乎各向同性的质子传导性。 PSP-b-PAES表现出由疏水和亲水域组成的微相分离结构,而无规共聚物表现出同质的形态。 PSP-b-PAES的质子传导率比无规共聚物的质子传导率大,IEC为2.01 meq g〜(-1),尤其是在相对湿度较低的情况下。即使在90°C和0.2 MPa的低湿度17%RH下,PSP-b-PAES仍具有很高的PEFC性能。即,在0.5 A cm〜(-2)的负载电流密度下,电池电压为0.69 V,最大输出为0.73 W cm〜(-2),比无规共聚物(0.65 V)在30%RH下的电池电压高得多。和0.51 W cm〜(-2))和Nafion112(0.70 V和0.61 W cm〜(-2))。尽管分子量相对较低,但PSP-b-PAES在90°C的PEFC操作下仍显示750 h的相当高的耐久性。 PSP-b-PAES作为PEFC应用的高分子电解质膜具有很高的潜力。

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