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首页> 外文期刊>Polymer Degradation and Stability >Degradation of perfluorinated sulfonic acid films: An in-situ infrared spectro-electrochemical study
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Degradation of perfluorinated sulfonic acid films: An in-situ infrared spectro-electrochemical study

机译:全氟磺酸膜的降解:原位红外光谱电化学研究

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The in-situ Fourier transform infrared (FTIR) spectro-electrochemical method was used to evaluate the degradation mechanism of perfluorinated sulfonic acid (PFSA) polymer for the first time. The effect of H_2O_2 concentration in Fenton's reagent on the PFSA film degradation was studied. It was found that the effect of the H_2O_2 concentration on the chemical degradation of the PFSA film was limited, whereas, the electrochemical degradation was obviously enhanced at higher H_2O_2 concentrations. The chemical degradation of PFSA film in Fenton's reagent was similar to that in pure H_2O_2 solution. However, the results indicated that the electrode potential is the dominating factor affecting the degradation of the PFSA film. It is clear that the electrochemical degradation of PFSA film in Fenton's reagent is more serious than that in pure H_2O_2 solution. Moreover, it is indicated that the main cause of the membrane degradation is the instability of the backbone of the polymer chain under electrochemical conditions and secondarily the loss of sulfuric groups in the side-chains. It is concluded that the in-situ FTIR spectro-electrochemical method could be used to evaluate more objectively the degradation of the polymer film.
机译:现场傅里叶变换红外光谱(FTIR)光谱电化学方法首次用于评估全氟磺酸(PFSA)聚合物的降解机理。研究了芬顿试剂中H_2O_2浓度对PFSA膜降解的影响。发现H_2O_2浓度对PFSA膜化学降解的影响是有限的,而在较高的H_2O_2浓度下电化学降解明显增强。 Fenton试剂中PFSA膜的化学降解与纯H_2O_2溶液中的相似。但是,结果表明,电极电势是影响PFSA膜降解的主要因素。显然,芬顿试剂中PFSA膜的电化学降解比纯H_2O_2溶液中的更严重。此外,表明膜降解的主要原因是在电化学条件下聚合物链主链的不稳定性,其次是侧链中硫基的损失。结论是,原位FTIR光谱电化学方法可用于更客观地评估聚合物膜的降解。

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