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首页> 外文期刊>Journal of power sources >Understanding the fingerprint region in the infra-red spectra of perfluorinated ionomer membranes and corresponding model compounds: Experiments and theoretical calculations
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Understanding the fingerprint region in the infra-red spectra of perfluorinated ionomer membranes and corresponding model compounds: Experiments and theoretical calculations

机译:了解全氟化离聚物膜和相应的模型化合物的红外光谱中的指纹区域:实验和理论计算

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摘要

We present an ATR-FTIR study of three major perfluorinated ionomers that are used as proton exchange membranes in fuel cells (FCs) and that differ in their side chains: Nation, Aquivion and 3M membrane. The choice of the following low-molecular-weight model compounds (MCs) that mimic the membrane side chains was essential for FTIR band assignment: perfluoro(3-methyl-2,4-dioxahexane)sulfonic acid for Nation, perfluoro(2-ethoxyethane)sulfonic acid for Aquivion, and perfluoro(2-ethoxybutane)sulfonic acid for the 3M membrane. The major goal was to identify spectral bands that can be used for recognizing bonds involved in membrane fragmentation. A major focus was on the signals from the C-O-C bonds, which were assigned in some papers for Nation and Aquivion membranes. Our ATR-FTIR results for 3M membranes did not conform to these assignments, and DFT calculations of the vibrational frequencies for the MCs were used to resolve this conundrum. The ATR-FTIR spectra of membranes and MCsandtheDFT calculations led to an understanding of the fingerprint region of all membranes, and to a re-examination and re-assignment of results for Nation and Aquivion membranes. The low intensity of the spectral bands for the ether link connected to the backbone (for all membranes) and also in the side chain (for Nation) suggests that these bands cannot be used for the determination of the extent of degradation.
机译:我们对三种主要的全氟化离聚物进行ATR-FTIR研究,这三种离聚物在燃料电池(FC)中用作质子交换膜,其侧链不同:Nation,Aquivion和3M膜。下列模拟膜侧链的低分子量模型化合物(MC)的选择对于FTIR波段分配至关重要:全氟(3-甲基-2,4-二氧杂己烷)磺酸为国家,全氟(2-乙氧基乙烷)磺酸用于Aquivion,全氟(2-乙氧基丁烷)磺酸用于3M膜。主要目标是确定可用于识别与膜碎裂有关的键的光谱带。主要焦点是来自C-O-C键的信号,在某些论文中已将这些信号分配给Nation和Aquivion膜。我们对3M膜的ATR-FTIR结果与这些分配不符,并且使用MC的振动频率的DFT计算来解决这一难题。膜的ATR-FTIR光谱和MCsandtheDFT计算导致对所有膜的指纹区域的了解,并对Nation和Aquivion膜的结果进行了重新检查和重新分配。连接到主链(对于所有膜)以及侧链(对于Nation)的醚键的光谱带强度低,表明这些带不能用于确定降解程度。

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