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首页> 外文期刊>ACS Omega >Use of a High-Performance Poly(p-phenylene)-Based Aromatic Hydrocarbon Ionomer with Superacid Groups in Fuel Cells under Low Humidity Conditions
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Use of a High-Performance Poly(p-phenylene)-Based Aromatic Hydrocarbon Ionomer with Superacid Groups in Fuel Cells under Low Humidity Conditions

机译:在低湿度条件下高性能基于聚( p 亚苯基)的具有超强酸基团的芳族烃离聚物在燃料电池中的应用

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Aromatic ionomers with perfluoroalkyl sulfonic acid groups for fuel cell applications have been prepared mostly by the post-functionalization method. Herein, we present a direct polymerization method using a novel monomer with a perfluorosulfonic acid group to control the amount and position of the sulfonic acid groups. A poly(p -phenylene)-based aromatic hydrocarbon ionomer bearing a pendant perfluorosulfonic acid group in a substituent at the 2-position is synthesized by Ni(0)-catalyzed coupling polymerization. The direct polymerization provides M _(n) values of up to 169?000 with a highly controlled molecular structure and allows the formation of thin membranes. These ionomers were found to combine the positive features of perfluorinated and aromatic hydrocarbon ionomers, and these thin membranes with a relatively high ion exchange capacity showed high proton conductivity and excellent fuel cell performance (907 mW cm~(–2) even at 80 °C and 30% RH) under low humidity conditions compared with other reported aromatic hydrocarbon ionomers.
机译:用于燃料电池的具有全氟烷基磺酸基团的芳族离聚物大部分是通过后官能化方法制备的。本文中,我们提出了一种使用具有全氟磺酸基团的新型单体来控制磺酸基团的量和位置的直接聚合方法。通过Ni(0)催化的偶联聚合合成在2-位取代基上带有侧链全氟磺酸基团的基于聚(p-亚苯基)的芳族烃离聚物。直接聚合提供高度受控的分子结构的M _(n)值高达169?000,并允许形成薄膜。发现这些离聚物结合了全氟化和芳族烃离聚物的积极特性,并且这些具有较高离子交换容量的薄膜即使在80°C的条件下仍显示出高质子传导性和出色的燃料电池性能(907 mW cm〜(–2)与其他报道的芳烃离聚物相比,在低湿度条件下的相对湿度和相对湿度为30%)。

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