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Characteristics and direct methanol fuel cell performance of polymer electrolyte membranes prepared from poly(vinyl alcohol-b-styrene sulfonic acid)

机译:聚(乙烯醇-b-苯乙烯磺酸)制备的高分子电解质膜的特性及其直接甲醇燃料电池性能

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Block type polymer electrolyte membranes (PEMs) were prepared by casting an aqueous solution of a block copolymer, poly(vinyl alcohol-b-styrene sulfonic acid) (PVA-b-PSSA), and by cross-linking the PVA chains with glutaraldehyde (GA) solution at various GA concentrations to investigate the effect of the cross-linking conditions on the properties of the block-type PEMs. The proton conductivity and the permeability of methanol through the block-type PEMs decreased with increasing GA concentration. The permeability coefficient through the block-type PEM prepared under the conditions of c(GA) = 0.05% is about 6 times lower than that through Nafion115 (R) under the same measurement conditions. A test cell for a direct methanol fuel cell constructed using the block-type PEMs delivered 32.4mWcm(-2) of P-max at 116mA cm(-2) of load current density at 1M methanol solution, which is almost the same value obtained with Nafion115 (R). However, at high methanol concentrations (>9 M), the P-max of the block-type PEM was 17.8mWcm(-2), and was 86% higher than that of Nafion (R) 115. (C) 2014 Elsevier Ltd. All rights reserved.
机译:嵌段型聚合物电解质膜(PEMs)的制备方法是:浇铸嵌段共聚物,聚乙烯醇-b-苯乙烯磺酸(PVA-b-PSSA)的水溶液,并将PVA链与戊二醛( GA)溶液中,以研究交联条件对嵌段型PEM的性能的影响。随着GA浓度的增加,质子传导率和甲醇通过嵌段型PEM的渗透性降低。在相同的测量条件下,在c(GA)= 0.05%的条件下制备的嵌段型PEM的渗透系数比通过Nafion115(R)的渗透系数低约6倍。使用块状PEM构建的直接甲醇燃料电池的测试电池,在1M甲醇溶液中以116mA cm(-2)的负载电流密度提供32.4mWcm(-2)的P-max使用Nafion115(R)。但是,在高甲醇浓度(> 9 M)下,嵌段型PEM的P-max为17.8mWcm(-2),比Nafion(R)115高86%。(C)2014 Elsevier Ltd 。 版权所有。

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