Self-oscillating Water Chemiluminescence Modes and Reactive Oxygen Species Generation Induced by Laser Irradiation; Effect of the Exclusion Zone Created by Nafion

Samples of water inside and outside an exclusion zone (EZ), created by Nafion swollen in water, were irradiated at the wavelength l = 1264 nm, which stimulates the electronic transition of dissolved oxygen from the triplet state to the excited singlet state. This irradiation induces, after a long la...

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Main Authors: Sergey V. Gudkov, Maxim E. Astashev, Vadim I. Bruskov, Valeriy А. Kozlov, Stanislav D. Zakharov, Nikolai F. Bunkin
Format: Article
Language:English
Published: MDPI AG 2014-11-01
Series:Entropy
Subjects:
Online Access:http://www.mdpi.com/1099-4300/16/11/6166
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author Sergey V. Gudkov
Maxim E. Astashev
Vadim I. Bruskov
Valeriy А. Kozlov
Stanislav D. Zakharov
Nikolai F. Bunkin
author_facet Sergey V. Gudkov
Maxim E. Astashev
Vadim I. Bruskov
Valeriy А. Kozlov
Stanislav D. Zakharov
Nikolai F. Bunkin
author_sort Sergey V. Gudkov
collection DOAJ
description Samples of water inside and outside an exclusion zone (EZ), created by Nafion swollen in water, were irradiated at the wavelength l = 1264 nm, which stimulates the electronic transition of dissolved oxygen from the triplet state to the excited singlet state. This irradiation induces, after a long latent period, chemiluminescence self-oscillations in the visible and near UV spectral range, which last many hours. It occurs that this effect is EZ-specific: the chemiluminescence intensity is twice lower than that from the bulk water, while the latent period is longer for the EZ. Laser irradiation causes accumulation of H2O2, which is also EZ-specific: its concentration inside the EZ is less than that in the bulk water. These phenomena can be interpreted in terms of a model of decreasing O2 content in the EZ due to increased chemical activity of bisulfite anions (HSO3−), arisen as the result of dissociation of terminal sulfonate groups of the Nafion. The wavelet transform analysis of the chemiluminescence intensity from the EZ and the bulk water gives, that self-oscillations regimes occurring in the liquid after the latent period are the determinate processes. It occurred that the chemiluminescence dynamics in case of EZ is characterized by a single-frequency self-oscillating regime, whereas in case of the bulk water, the self-oscillation spectrum consists of three spectral bands.
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spelling doaj.art-ee86f786e2974a57974d100df9d9b3112022-12-22T04:25:12ZengMDPI AGEntropy1099-43002014-11-0116116166618510.3390/e16116166e16116166Self-oscillating Water Chemiluminescence Modes and Reactive Oxygen Species Generation Induced by Laser Irradiation; Effect of the Exclusion Zone Created by NafionSergey V. Gudkov0Maxim E. Astashev1Vadim I. Bruskov2Valeriy А. Kozlov3Stanislav D. Zakharov4Nikolai F. Bunkin5Institute of Theoretical and Experimental Biophysics, Russian Academy of Sciences, Pushchino, Institutskaya 3, Moscow Region, 142290, RussiaInstitute of Theoretical and Experimental Biophysics, Russian Academy of Sciences, Pushchino, Institutskaya 3, Moscow Region, 142290, RussiaInstitute of Theoretical and Experimental Biophysics, Russian Academy of Sciences, Pushchino, Institutskaya 3, Moscow Region, 142290, RussiaProkhorov General Physics Institute, Russian Academy of Sciences, Moscow, Vavilova 38, 119991, RussiaInstitute of Cell Biophysics, Russian Academy of Sciences, Pushchino, Institutskaya 3, Moscow Region, 142290, RussiaProkhorov General Physics Institute, Russian Academy of Sciences, Moscow, Vavilova 38, 119991, RussiaSamples of water inside and outside an exclusion zone (EZ), created by Nafion swollen in water, were irradiated at the wavelength l = 1264 nm, which stimulates the electronic transition of dissolved oxygen from the triplet state to the excited singlet state. This irradiation induces, after a long latent period, chemiluminescence self-oscillations in the visible and near UV spectral range, which last many hours. It occurs that this effect is EZ-specific: the chemiluminescence intensity is twice lower than that from the bulk water, while the latent period is longer for the EZ. Laser irradiation causes accumulation of H2O2, which is also EZ-specific: its concentration inside the EZ is less than that in the bulk water. These phenomena can be interpreted in terms of a model of decreasing O2 content in the EZ due to increased chemical activity of bisulfite anions (HSO3−), arisen as the result of dissociation of terminal sulfonate groups of the Nafion. The wavelet transform analysis of the chemiluminescence intensity from the EZ and the bulk water gives, that self-oscillations regimes occurring in the liquid after the latent period are the determinate processes. It occurred that the chemiluminescence dynamics in case of EZ is characterized by a single-frequency self-oscillating regime, whereas in case of the bulk water, the self-oscillation spectrum consists of three spectral bands.http://www.mdpi.com/1099-4300/16/11/6166NafionEZ waterexclusion zoneluminescencereactive oxygen species (ROS)singlet oxygenwaveletphase frequency coherenceIR-laser
spellingShingle Sergey V. Gudkov
Maxim E. Astashev
Vadim I. Bruskov
Valeriy А. Kozlov
Stanislav D. Zakharov
Nikolai F. Bunkin
Self-oscillating Water Chemiluminescence Modes and Reactive Oxygen Species Generation Induced by Laser Irradiation; Effect of the Exclusion Zone Created by Nafion
Entropy
Nafion
EZ water
exclusion zone
luminescence
reactive oxygen species (ROS)
singlet oxygen
wavelet
phase frequency coherence
IR-laser
title Self-oscillating Water Chemiluminescence Modes and Reactive Oxygen Species Generation Induced by Laser Irradiation; Effect of the Exclusion Zone Created by Nafion
title_full Self-oscillating Water Chemiluminescence Modes and Reactive Oxygen Species Generation Induced by Laser Irradiation; Effect of the Exclusion Zone Created by Nafion
title_fullStr Self-oscillating Water Chemiluminescence Modes and Reactive Oxygen Species Generation Induced by Laser Irradiation; Effect of the Exclusion Zone Created by Nafion
title_full_unstemmed Self-oscillating Water Chemiluminescence Modes and Reactive Oxygen Species Generation Induced by Laser Irradiation; Effect of the Exclusion Zone Created by Nafion
title_short Self-oscillating Water Chemiluminescence Modes and Reactive Oxygen Species Generation Induced by Laser Irradiation; Effect of the Exclusion Zone Created by Nafion
title_sort self oscillating water chemiluminescence modes and reactive oxygen species generation induced by laser irradiation effect of the exclusion zone created by nafion
topic Nafion
EZ water
exclusion zone
luminescence
reactive oxygen species (ROS)
singlet oxygen
wavelet
phase frequency coherence
IR-laser
url http://www.mdpi.com/1099-4300/16/11/6166
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