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Using ESR spectroscopy to study radical intermediates in proton-exchange membranes exposed to oxygen radicals

机译:使用ESR光谱研究暴露于氧自由基的质子交换膜中的自由基中间体

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Direct ESR and spin-trapping experiments were used to study the behavior of Nafion, a perfluorinated ionomer membrane used in fuel cells, when exposed in the laboratory to oxygen radicals produced by Fenton and photo-Fenton reactions. DMPO (5,5-dimethyl-1-pyroline) was used as the spin trap. The results suggest that the two ESR methods provide complementary information on Nafion fragmentation. The presence of membrane-derived fragments was suggested indirectly by the presence of a broad signal (line width ≈ 84 G) after prolonged exposure of the membrane to the Fenton reagent based on Ti(III), and by the DMPO adduct of a carbon-centered radical in the spin-trapping experiments. The most convincing proof for the presence of perfluorinated radicals was obtained in Nafion membranes partially neutralized by Cu(II), Fe(II) and Fe(III) upon exposure to UV-irradiation in the presence or absence of H2O2 (photo-Fenton treatment). Identification of the chain-end radical RCF2CF 2 ? with magnetic parameters different to those determined for the chain-end detected in γ-irradiated Teflon, was taken as evidence for the attack of reactive oxygen radicals on the side-chain of the membrane. Additional support for this suggestion was the detection of the “quartet” ESR signal assigned to the CF3C?O radical, and of the “quintet” ESR signal assigned to the radical centered at the intersection of the main and side chains. The limitations and advantages of each approach are discussed.
机译:当在实验室中暴露于Fenton和光Fenton反应产生的氧自由基时,使用直接ESR和自旋捕集实验研究了Nafion(一种用于燃料电池的全氟化离聚物膜)的行为。 DMPO(5,5-二甲基-1-吡咯啉)用作自旋阱。结果表明,两种ESR方法可提供有关Nafion碎片的补充信息。膜长时间暴露于基于Ti(III)的Fenton试剂后存在宽信号(线宽≈84 G),以及DMPO碳-碳的DMPO加合物间接暗示了膜衍生片段的存在。在自旋阱实验中使自由基居中。在存在或不存在H2O2的情况下,在暴露于紫外线下,被Cu(II),Fe(II)和Fe(III)部分中和的Nafion膜中获得了最令人信服的全氟化自由基的证据。 (光芬顿处理)。鉴定出的磁链末端自由基RCF2 CF 2 α的磁参数不同于在γ射线辐照的聚四氟乙烯中检测到的链末端所确定的磁参数,以此作为对铁的攻击的证据。膜侧链上的活性氧自由基。此建议的其他支持是检测分配给CF3 C?自由基的“四重奏” ESR信号,以及检测分配给以自由基的交点为中心的自由基的“五重奏” ESR信号。主链和侧链。讨论了每种方法的局限性和优点。

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