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侧链型萘基磺化聚芳醚酮对用于直接甲醇燃料电池的 Nafion 复合膜的性能增强作用。

Property Enhancement Effects of Side-Chain-Type Naphthalene-Based Sulfonated Poly(arylene ether ketone) on Nafion Composite Membranes for Direct Methanol Fuel Cells.

机构信息

Alan G. MacDiarmid Institute, College of Chemistry, Jilin University , Changchun 130012, People's Republic of China.

State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences , Changchun 130022, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2017 Sep 20;9(37):32227-32236. doi: 10.1021/acsami.7b08566. Epub 2017 Sep 7.

Abstract

Nafion/SNPAEK-x composite membranes were prepared by blending raw Nafion and synthesized side-chain-type naphthalene-based sulfonated poly(arylene ether ketone) with a sulfonation degree of 1.35 (SNPAEK-1.35). The incorporation of SNPAEK-1.35 polymer with ion exchange capacity (IEC) of 2.01 mequiv·g into a Nafion matrix has the property enhancement effects, such as increasing IECs, improving proton conductivity, enhancing mechanical properties, reducing methanol crossover, and improving single cell performance of Nafion. Morphology studies show that Nafion/SNPAEK-x composite membranes exhibit a well-defined microphase separation structure depending on the contents of SNPAEK-1.35 polymer. Among them, Nafion/SNPAEK-7.5% with a bicontinuous morphology exhibits the best comprehensive properties. For example, it shows the highest proton conductivities of 0.092 S cm at 25 °C and 0.163 S cm at 80 °C, which are higher than those of recast Nafion with 0.073 S cm at 25 °C and 0.133 S cm at 80 °C, respectively. Nafion/SNPAEK-5.0% and Nafion/SNPAEK-7.5% membranes display an open circuit voltage of 0.77 V and a maximum power density of 47 mW cm at 80 °C, which are much higher than those of recast Nafion of 0.63 V and 24 mW cm under the same conditions. Nafion/SNPAEK-5.0% membrane also has comparable tensile strength (12.7 MPa) to recast Nafion (13.7 MPa), and higher Young's modulus (330 MPa) than that of recast Nafion (240 MPa). By combining their high proton conductivities, comparable mechanical properties, and good single cell performance, Nafion/SNPAEK-x composite membranes have the potential to be polymer electrolyte materials for direct methanol fuel cell applications.

摘要

Nafion/SNPAEK-x 复合膜通过将原始 Nafion 与合成的侧链型萘基磺化聚芳醚酮(磺化度为 1.35 的 SNPAEK-1.35)共混制备而成。将具有 2.01 mequiv·g 的离子交换容量(IEC)的 SNPAEK-1.35 聚合物掺入 Nafion 基质中具有增强性能的效果,例如增加 IEC、提高质子电导率、增强机械性能、减少甲醇渗透以及提高 Nafion 的单电池性能。形态研究表明,Nafion/SNPAEK-x 复合膜根据 SNPAEK-1.35 聚合物的含量表现出定义明确的微相分离结构。其中,具有双连续形态的 Nafion/SNPAEK-7.5% 表现出最佳的综合性能。例如,在 25°C 时其质子电导率高达 0.092 S cm,在 80°C 时高达 0.163 S cm,高于分别为 0.073 S cm 和 0.133 S cm 的再铸 Nafion。Nafion/SNPAEK-5.0% 和 Nafion/SNPAEK-7.5% 膜在 80°C 时开路电压为 0.77 V,最大功率密度为 47 mW cm,远高于相同条件下再铸 Nafion 的 0.63 V 和 24 mW cm。Nafion/SNPAEK-5.0% 膜的拉伸强度(12.7 MPa)也与再铸 Nafion(13.7 MPa)相当,杨氏模量(330 MPa)高于再铸 Nafion(240 MPa)。Nafion/SNPAEK-x 复合膜具有高质子电导率、相当的机械性能和良好的单电池性能,有望成为直接甲醇燃料电池应用的聚合物电解质材料。

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