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不同同位素组成的水中聚合物膜溶胀时所揭示的低频随机极化电磁辐射的影响

Effects of Low-Frequency Randomly Polarized Electromagnetic Radiation, as Revealed upon Swelling of Polymer Membrane in Water with Different Isotopic Compositions.

作者信息

Gudkov Sergey V, Astashev Maxim E, Baymler Ilya V, Bolotskova Polina N, Kozlov Valery A, Simakin Alexander V, Khuong Minh T, Fomina Polina A, Bunkin Nikolai F

机构信息

Prokhorov General Physics Institute of the Russian Academy of Sciences, 38 Vavilova St., 119991 Moscow, Russia.

Department of Fundamental Sciences, Bauman Moscow State Technical University, 2-nd Baumanskaya Str. 5, 105005 Moscow, Russia.

出版信息

Materials (Basel). 2023 Jun 27;16(13):4622. doi: 10.3390/ma16134622.

Abstract

Photoluminescence from the surface of Nafion polymer membrane upon swelling in water under irradiation by electromagnetic waves at a frequency of 100 MHz was studied. In these experiments, natural deionized (DI) water with a deuterium content of 157 ppm and deuterium-depleted water (DDW, deuterium content is 1 ppm) were explored. We have studied for the first time the effect of linearly and randomly polarized low-frequency electromagnetic radiation on the luminescence excitation. To obtain low-frequency electromagnetic radiation with random polarizations, anisotropic solid submicron-sized particles, which result in depolarization effects upon scattering of the initially linearly polarized radiation, were used. We compared two types of colloidal particles: spherically symmetric (isotropic) and elongated (anisotropic). If the radiation is linearly polarized, the intensity of luminescence from the Nafion surface decreases exponentially as the polymer is soaked, and such a behavior is observed both in natural DI water and DDW. When spherically symmetric submicron-sized particles are added to a liquid sample, the luminescence intensity also decreases exponentially upon swelling in both natural DI water and DDW. At the same time, when anisotropic submicron-sized particles are added to DI water, random jumps in the luminescence intensity appear during swelling. At the same time, the exponential decrease in the luminescence intensity is retained upon swelling in DDW. A qualitative theoretical model for the occurrence of random jumps in the luminescence intensity is presented.

摘要

研究了在100MHz频率的电磁波照射下,Nafion聚合物膜在水中溶胀时表面的光致发光。在这些实验中,探索了氘含量为157ppm的天然去离子(DI)水和贫氘水(DDW,氘含量为1ppm)。我们首次研究了线性和随机极化的低频电磁辐射对发光激发的影响。为了获得具有随机极化的低频电磁辐射,使用了各向异性的固体亚微米级颗粒,这些颗粒在初始线性极化辐射散射时会产生去极化效应。我们比较了两种类型的胶体颗粒:球对称(各向同性)和细长(各向异性)。如果辐射是线性极化的,随着聚合物被浸泡,Nafion表面的发光强度呈指数下降,并且在天然DI水和DDW中都观察到这种行为。当将球对称亚微米级颗粒添加到液体样品中时,在天然DI水和DDW中溶胀时发光强度也呈指数下降。同时,当将各向异性亚微米级颗粒添加到DI水中时,溶胀过程中发光强度会出现随机跳跃。同时,在DDW中溶胀时发光强度呈指数下降的情况仍然存在。提出了发光强度随机跳跃发生的定性理论模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6504/10342330/1f6a77c49512/materials-16-04622-g001.jpg

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