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Measurement and adjustment of proton activity in solid polymer electrolytes

机译:固体聚合物电解质中质子活性的测量和调整

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Technological progress in electrochemical energy conversion devices requires new solid polymer electrolyte membrane (PEM)materials with particular properties. The strongly acidic nature of Nafion (R) is not always desirable; for instance, CO2 electroreduction requires a low proton activity to avoid excess hydrogen evolution. This communication presents a novel measurement technique for determining the acidity of a PEM, using a pH-sensitive electrode half-cell attached to the membrane sample, connected to a reference electrode via a salt bridge. A dynamic hydrogen electrode on platinized-platinum surface (DHE) was found to give repeatable results within 5% uncertainty. Several membranes based on Nafion (R) impregnated with various basic species were tested, as well as an anion-exchange membrane and a poly-phosphonic acid membrane. The technique is expected to have wider reaching applications in PEM fuel cell and redox flow battery development, as well as in the electrolysis and electrodialysis industries.
机译:电化学能量转换装置的技术进步需要具有特定性质的新型固体聚合物电解质膜(PEM)材料。 Nafion(R)的强酸性本质并不总是可取的;例如,CO2电荷需要低质子活性以避免过量的氢气进化。该通信呈现了一种新的测量技术,用于使用连接到膜样品的pH敏感电极半电池确定PEM的酸度,通过盐桥连接到参比电极。发现镀铂表面(DHE)上的动态氢电极在5%不确定性范围内可重复产生。测试基于浸渍有各种基本物质的Nafion的几种膜,以及阴离子交换膜和聚膦酸膜。该技术预计将在PEM燃料电池和氧化还原流电池开发中更广泛地达到应用,以及电解和电码产业。

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