Consideration is given to single and multibubble sonochemiluminescence (SCL) in acidic Ru(bpy) aqueous solutions due to the light emission of the excited ion *Ru(bpy) at 613 nm. Spectrophotometrically controlled reduction of Ru(bpy) to Ru(bpy) occurs in both regimes of sonolysis. The kinetics parameters of reduction under SCL during the multibubble sonolysis do not depend on the H concentration in the solution (0.005 and 0.5 M HSO), but differ for the single-bubble sonolysis. The intensity of single-bubble SCL is maximal at the beginning of sonolysis and monotously decreases to the level of steady-state SCL after complete reduction of Ru(bpy) to Ru(bpy). The intensity of multibubble SCL at the beginning of sonolysis is below the recognition threshold. Then it grows, passes through the maximum and also approaches the steady-state level after the reduction of ruthenium. By considering possible chemiluminescent reactions Ru(bpy) + e → *Ru(bpy), Ru(bpy) + H → *Ru(bpy) + H, Ru(bpy) + Ru(bpy) → *Ru(bpy) + Ru(bpy) as well as the reactions of sonochemical formation of Ru(bpy) and Ru(bpy) from Ru(bpy) and the reaction H + e → H, the conclusion is made about the generation of e during the single-bubble sonolysis of water molecules. The presence and absence of e during the single and multibubble sonolysis respectively explain the distinctions in the SCL kinetics. The evidence for the generation of e lies also in the reduction of the Fe(CN) ion observed during the single-bubble sonolysis in the neutral solution, which is impossible without e. The yield of e is comparable to that of the hydrogen atom.
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http://dx.doi.org/10.1016/j.ultsonch.2019.104674 | DOI Listing |
Ultrason Sonochem
July 2024
High-energy Chemistry and Catalysis Laboratory, Institute of Petrochemistry and Catalysis UFRC RAS, 141 Prospekt Oktyabrya, Ufa 450075, Russia.
Single-bubble sonoluminescence spectra of the following samples were recorded in the modes of standing and moving bubble in liquid near the center of its levitation under the action of ultrasound: water contaminated with additives of commercial gasoline (1.5 - 38 mg·L), water with additives of individual gasoline components (hexane, benzene, toluene, p-xylene, naphthalene, anthracene, and p-terphenyl), and solutions of these gasoline components in hexane. Characteristic bands λ of gasoline component emitters are recorded in the sonoluminescence spectra of a moving bubble for water samples contaminated with additives of commercial gasoline: 290 (p-xylene), 340 (p-terphenyl), 381, 399, 424, 449 (anthracene), and 438, 474, 516, 564 nm (C, a hydrocarbon decomposition product during sonolysis).
View Article and Find Full Text PDFUltrason Sonochem
November 2019
Institute of Petrochemistry and Catalysis, Russian Academy of Sciences, Ufa, Russian Federation.
Consideration is given to single and multibubble sonochemiluminescence (SCL) in acidic Ru(bpy) aqueous solutions due to the light emission of the excited ion *Ru(bpy) at 613 nm. Spectrophotometrically controlled reduction of Ru(bpy) to Ru(bpy) occurs in both regimes of sonolysis. The kinetics parameters of reduction under SCL during the multibubble sonolysis do not depend on the H concentration in the solution (0.
View Article and Find Full Text PDFUltrason Sonochem
March 2019
Institute of Petrochemistry and Catalysis, Russian Academy of Sciences, Ufa, Russian Federation.
It is for the first time that we have obtained emission-line spectra of metal atoms during single-bubble sonoluminescence of metal carbonyl W(CO), Mo(CO), Cr(CO) solutions in dodecane and similar spectra during single- and multibubble sonoluminescence of nanodispersed Cr(CO) suspensions in water, 83% HSO and 74% HPO. Nanodispersed suspensions with an average particle size of 15-20 nm were obtained through sonodispersing and filtering Cr(CO) crystals in water. The method for comparing the intensities of two atomic metal lines made it possible to measure the electronic temperatures achieved in cavitation bubbles under different modes of sonolysis that vary in the range of (4.
View Article and Find Full Text PDFUltrason Sonochem
April 2018
Institute of Petrochemistry and Catalysis, Russian Academy of Sciences, Ufa, Russian Federation.
The sonochemiluminescence spectra of electron-excited ions [Ru(bpy)] was registered for the first time during sonolysis of argon saturated aqueous solutions of Ru(bpy)Cl with low concentration. At single-bubble sonolysis, the luminescence band of ruthenium is recorded at a concentration of Ru(bpy)Cl from 10 M, and at multibubble from 10 M. Possible mechanisms for the appearance of the band of a tris-bipyridyl ruthenium(II) complex on the background of an structureless continuum of water in the spectra of sonoluminescence are analyzed.
View Article and Find Full Text PDFUltrason Sonochem
September 2016
Laboratory of Environmental Engineering, Department of Process Engineering, Faculty of Engineering, Badji Mokhtar - Annaba University, P.O. Box 12, 23000 Annaba, Algeria.
The sonication of aqueous solution generates microscopic cavitation bubbles that may growth and violently collapse to produce highly reactive species (i.e. OH, HO2 and H2O2), hydrogen and emit light, sonoluminescence.
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