亚甲基蓝和抗坏血酸在纳菲翁聚合物膜上的吸附特性

Николай Федорович Бункин, С. Л. Тимченко, Г. Н. Фадеев, Н А Богатов, Н. А. Задорожный
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摘要

采用红外傅立叶光谱法研究了聚合物膜“Nafion”吸附亚甲基蓝和抗坏血酸的透过系数。研究发现,聚合物在溶液中溶胀过程中,膜的颜色和红外透射率发生了变化,这与“膜-溶液”体系中发生的化学反应有关。实验发现,蒸馏水、氧化亚甲基蓝(Mb^+)和还原无色亚甲基蓝(MbH^0)在聚合物膜上的吸附速率和解吸速率相近,均在吸附速率0.029 ~ 0.031 min^-1、解吸速率0.010 ~ 0.011 min^-1范围内。对抗坏血酸水溶液的吸附速率为0.021 min^-1,解吸速率为0.08 min^-1。在Мethylene蓝色白色形态的吸收过程中,我们检测到膜颜色的变化。因此,在膜中发生了氧化还原反应。在膜长时间干燥后,由于膜的质子交换特性,亚甲基蓝的白色形式被氧化成Mb+的初始状态。这一事实可能表明“亚甲基蓝”体系具有异色性。亚甲基蓝吸附在磺化全氟碳上的体系可以被认为是脱氢酶的一种模型,脱氢酶是一种能够转移氢的生物催化剂。Nafion膜,由于其高阳离子导电性,促进质子转移,从而影响涉及亚甲基蓝的氧化还原反应的速率。
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Особенности адсорбции метиленового синего и аскорбиновой кислоты на полимерной мембране "Нафион"
Transmittance coefficient of polymer membrane "Nafion" during adsorption of methylene blue and ascorbic acid from aqueous solutions onto the membrane was investigated by infrared (IR) Fourier spectrometry. A change in the membrane color and transmittance in the IR range during swelling of the polymer in the studied solutions was found, which is associated with chemical reactions occurring in the "membrane-solution" system. It was found experimentally that the adsorption and desorption rates of distilled water, oxidized Methylene blue (Mb^+) and reduced colorless leuco-form of methylene blue (MbH^0) on the polymer membrane are close and lie within the following limits: adsorption rate 0.029-0.031 min^-1, desorption rate 0.010-0.011 min^-1. The adsorption and desorption rates of ascorbic acid from aqueous solution were 0.021 and 0.08 min^-1, respectively. During the sorption of Мethylene blue leuco-form, we detected a change in membrane color. Thus, a redox reaction occurred in the membrane. Upon prolonged drying of the membrane, due to the proton-exchange properties of the membrane, the leuco-form of methylene blue oxidized to the initial state of Mb+. This fact may indicate the manifestation of metachromatic properties of the system "Nafion - Methylene blue". The system consisting of Methylene blue adsorbed on sulfonated perfluorocarbon can be considered as a model of dehydrogenase, a biocatalyst capable of hydrogen transfer. The Nafion membrane, due to its high cationic conductivity, promotes proton transfer and thus affects the rate of redox reactions involving Methylene blue.
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