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Studying Proton Mobility in Zeolites by Varying Temperature Infrared Spectroscopy

机译:变红外光谱研究沸石中的质子迁移率

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We report a varying temperature infrared spectroscopic (VTIR) study with partial deuterium isotopic exchange as a method for characterizing proton mobility in acidic materials. This VTIR technique permits the estimation of activation energies for proton diffusion. Different acidic materials comprising classical proton-conducting materials, such as transition metal phosphates and sulfonated solids, as well as different zeolites, are tested with this new method. The applicability of the method is thus extended to a vast library of materials. Its underlying principles and assumptions are clearly presented herein. Depending on the temperature ranges, different activation energies for proton transfer are observed irrespective of the different materials. In addition to the well-studied transition metal phosphates, Si-rich zeolites appear to be promising proton-transfer materials (with Eact < 40 kJ mol?1) for application in high-temperature (>150 °C) PEM fuel cells. They significantly outperform Nafion and sulfonated silica, which exhibit higher activation energies with Eact ~ 50 and 120 kJ mol?1, respectively.
机译:我们报告了部分氘同位素交换作为表征酸性材料中质子迁移率的方法的可变温度红外光谱(VTIR)研究。该VTIR技术允许估计质子扩散的活化能。用这种新方法测试了包括传统质子传导材料的不同酸性材料,例如过渡金属磷酸盐和磺化固体,以及不同的沸石。因此,该方法的适用性扩展到了庞大的材料库。其基本原理和假设已在此处明确提出。取决于温度范围,观察到用于质子转移的不同活化能,而与不同材料无关。除了经过充分研究的过渡金属磷酸盐外,富硅沸石似乎是有前途的质子转移材料(Eact <40 kJ mol?1),可用于高温(> 150°C)PEM燃料电池。它们的性能明显优于Nafion和磺化二氧化硅,后者在Eact分别为50和120 kJ mol?1时表现出更高的活化能。

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