首页> 外文期刊>Journal of power sources >Cross-linked poly(vinyl alcohol) and poly(styrene sulfonic acid-co-maleic anhydride)-based semi-interpenetrating network as proton-conducting membranes for direct methanol fuel cells
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Cross-linked poly(vinyl alcohol) and poly(styrene sulfonic acid-co-maleic anhydride)-based semi-interpenetrating network as proton-conducting membranes for direct methanol fuel cells

机译:交联聚乙烯醇和基于苯乙烯磺酸-马来酸酐的半互穿网络,作为直接甲醇燃料电池的质子传导膜

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摘要

A series of semi-interpenetrating network (SIPN) membranes was synthesized by using poly(vinyl alcohol) (PVA) with sulfosuccinic acid (SSA) as a cross-linking agent and poly(styrene sulfonic acid-co-maleic acid) (PSSA-MA) as a proton source for direct methanol fuel cell (DMFC) application. A bridge of SSA between PVA molecules not only reinforced the network but also provided extra proton-conducting paths. PSSA-MA chains trapped in the network were the major proton conduction path of the membrane. The SIPN membranes with 80% PSSA-MA (SIPN-80) exhibited a higher proton conductivity value of 2.59 × 10~(-2) S cm~(-1) and very low methanol permeability (4.1 × 10~(-7) cm~2 s~(-1)). More specifically, the SIPN membranes exhibited very high selectivity (proton conductivity/methanol permeability). Membrane characteristics such as water uptake, proton conductivity and methanol permeability were evaluated to determine the effect of PVA molecular weights. The SIPN membranes with higher PVA molecular weight were also evaluated using methanol and oxygen gas in a single cell fuel cell at various temperatures. Power density value of over 100mW cm~(-2) was obtained for SIPN membrane-based membrane electrode assembly at 80 ℃ and using commercial binary alloy anode catalysts and 2M methanol.
机译:以磺基丁二酸(SSA)为交联剂,以聚乙烯醇(PVA)和聚苯乙烯磺酸-马来酸(PSSA-)为原料,合成了一系列半互穿网络(SIPN)膜。 MA)作为直接甲醇燃料电池(DMFC)应用的质子源。 PVA分子之间的SSA桥不仅增强了网络,还提供了额外的质子传导路径。困在网络中的PSSA-MA链是膜的主要质子传导路径。具有80%PSSA-MA的SIPN膜(SIPN-80)表现出更高的质子电导率值2.59×10〜(-2)S cm〜(-1)和非常低的甲醇渗透性(4.1×10〜(-7) cm〜2 s〜(-1))。更具体地说,SIPN膜表现出非常高的选择性(质子传导率/甲醇渗透率)。评估膜的特性,例如吸水率,质子传导率和甲醇渗透率,以确定PVA分子量的影响。还使用甲醇和氧气在不同温度下的单电池燃料电池中评估了具有较高PVA分子量的SIPN膜。对于SIPN膜基膜电极组件,在80℃下,使用商业二元合金阳极催化剂和2M甲醇,功率密度值均超过100mW cm〜(-2)。

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