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Long-Term Effect of Low-Frequency Electromagnetic Irradiation in Water and Isotonic Aqueous Solutions as Studied by Photoluminescence from Polymer Membrane

The swelling of a polymer membrane Nafion(TM) in deionized water and isotonic NaCl and Ringer’s solutions was studied by photoluminescent spectroscopy. According to our previous studies, the surface of this membrane could be considered as a model for a cellular surface. Liquid samples, in which the...

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Autores principales: Bunkin, Nikolai F., Bolotskova, Polina N., Bondarchuk, Elena V., Gryaznov, Valery G., Gudkov, Sergey V., Kozlov, Valeriy A., Okuneva, Maria A., Ovchinnikov, Oleg V., Smoliy, Oleg P., Turkanov, Igor F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8124172/
https://www.ncbi.nlm.nih.gov/pubmed/33947044
http://dx.doi.org/10.3390/polym13091443
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author Bunkin, Nikolai F.
Bolotskova, Polina N.
Bondarchuk, Elena V.
Gryaznov, Valery G.
Gudkov, Sergey V.
Kozlov, Valeriy A.
Okuneva, Maria A.
Ovchinnikov, Oleg V.
Smoliy, Oleg P.
Turkanov, Igor F.
author_facet Bunkin, Nikolai F.
Bolotskova, Polina N.
Bondarchuk, Elena V.
Gryaznov, Valery G.
Gudkov, Sergey V.
Kozlov, Valeriy A.
Okuneva, Maria A.
Ovchinnikov, Oleg V.
Smoliy, Oleg P.
Turkanov, Igor F.
author_sort Bunkin, Nikolai F.
collection PubMed
description The swelling of a polymer membrane Nafion(TM) in deionized water and isotonic NaCl and Ringer’s solutions was studied by photoluminescent spectroscopy. According to our previous studies, the surface of this membrane could be considered as a model for a cellular surface. Liquid samples, in which the membrane was soaked, were subjected to preliminary electromagnetic treatment, which consisted of irradiating these samples with electric rectangular pulses of 1 µs duration using platinum electrodes immersed in the liquid. We used a series of pulses with a repetition rate of 11–125 Hz; the pulse amplitudes were equal to 100 and 500 mV. It turned out that at certain pulse repetition rates and their amplitudes, the characteristic swelling time of the polymer membrane significantly differs from the swelling time in untreated (reference) samples. At the same time, there is no effect for certain frequencies/pulse amplitudes. The time interval between electromagnetic treatment and measurements was about 20 min. Thus, in our experiments the effects associated with the long-term relaxation of liquids on the electromagnetic processing are manifested. The effect of long-term relaxation could be associated with a slight change in the geometric characteristics of bubston clusters during electromagnetic treatment.
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spelling pubmed-81241722021-05-17 Long-Term Effect of Low-Frequency Electromagnetic Irradiation in Water and Isotonic Aqueous Solutions as Studied by Photoluminescence from Polymer Membrane Bunkin, Nikolai F. Bolotskova, Polina N. Bondarchuk, Elena V. Gryaznov, Valery G. Gudkov, Sergey V. Kozlov, Valeriy A. Okuneva, Maria A. Ovchinnikov, Oleg V. Smoliy, Oleg P. Turkanov, Igor F. Polymers (Basel) Article The swelling of a polymer membrane Nafion(TM) in deionized water and isotonic NaCl and Ringer’s solutions was studied by photoluminescent spectroscopy. According to our previous studies, the surface of this membrane could be considered as a model for a cellular surface. Liquid samples, in which the membrane was soaked, were subjected to preliminary electromagnetic treatment, which consisted of irradiating these samples with electric rectangular pulses of 1 µs duration using platinum electrodes immersed in the liquid. We used a series of pulses with a repetition rate of 11–125 Hz; the pulse amplitudes were equal to 100 and 500 mV. It turned out that at certain pulse repetition rates and their amplitudes, the characteristic swelling time of the polymer membrane significantly differs from the swelling time in untreated (reference) samples. At the same time, there is no effect for certain frequencies/pulse amplitudes. The time interval between electromagnetic treatment and measurements was about 20 min. Thus, in our experiments the effects associated with the long-term relaxation of liquids on the electromagnetic processing are manifested. The effect of long-term relaxation could be associated with a slight change in the geometric characteristics of bubston clusters during electromagnetic treatment. MDPI 2021-04-29 /pmc/articles/PMC8124172/ /pubmed/33947044 http://dx.doi.org/10.3390/polym13091443 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bunkin, Nikolai F.
Bolotskova, Polina N.
Bondarchuk, Elena V.
Gryaznov, Valery G.
Gudkov, Sergey V.
Kozlov, Valeriy A.
Okuneva, Maria A.
Ovchinnikov, Oleg V.
Smoliy, Oleg P.
Turkanov, Igor F.
Long-Term Effect of Low-Frequency Electromagnetic Irradiation in Water and Isotonic Aqueous Solutions as Studied by Photoluminescence from Polymer Membrane
title Long-Term Effect of Low-Frequency Electromagnetic Irradiation in Water and Isotonic Aqueous Solutions as Studied by Photoluminescence from Polymer Membrane
title_full Long-Term Effect of Low-Frequency Electromagnetic Irradiation in Water and Isotonic Aqueous Solutions as Studied by Photoluminescence from Polymer Membrane
title_fullStr Long-Term Effect of Low-Frequency Electromagnetic Irradiation in Water and Isotonic Aqueous Solutions as Studied by Photoluminescence from Polymer Membrane
title_full_unstemmed Long-Term Effect of Low-Frequency Electromagnetic Irradiation in Water and Isotonic Aqueous Solutions as Studied by Photoluminescence from Polymer Membrane
title_short Long-Term Effect of Low-Frequency Electromagnetic Irradiation in Water and Isotonic Aqueous Solutions as Studied by Photoluminescence from Polymer Membrane
title_sort long-term effect of low-frequency electromagnetic irradiation in water and isotonic aqueous solutions as studied by photoluminescence from polymer membrane
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8124172/
https://www.ncbi.nlm.nih.gov/pubmed/33947044
http://dx.doi.org/10.3390/polym13091443
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