Sharipov G L, Abdrakhmanov A M, Gareev B M, Yakshembetova L R
Institute of Petrochemistry and Catalysis, Russian Academy of Sciences, Ufa, Russian Federation.
Institute of Petrochemistry and Catalysis, Russian Academy of Sciences, Ufa, Russian Federation.
Ultrason Sonochem. 2018 Apr;42:526-531. doi: 10.1016/j.ultsonch.2017.12.013. Epub 2017 Dec 9.
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. Based on the results of the comparison of the sonoluminescence spectra of Ru(bpy)Cl aqueous solutions with the sonoluminescence spectra of aqueous solutions of rhodamine B (which has a high quantum yield of photoluminescence) it was established that a possible mechanism of sonophotoluminescence does not play a decisive role in ruthenium sonoluminescence. The effect of radical acceptors (O, CHOH, Cd, I) on ruthenium sonoluminescence is analyzed. The most significant mechanism for the formation of electron-excited ions [Ru(bpy)] during sonolysis is the sonochemiluminescence in oxidation-reduction reactions involving [Ru(bpy)] ions and radical products of sonolysis of water (OH, H, e) in the solution volume.
在低浓度的Ru(bpy)Cl氩饱和水溶液声解过程中,首次记录了电子激发离子[Ru(bpy)]的声致化学发光光谱。在单泡声解中,当Ru(bpy)Cl浓度为10⁻⁶M时记录到钌的发光带,在多泡声解中,当浓度为10⁻⁵M时记录到该发光带。分析了在声致发光光谱中,在无结构的水连续背景下出现三(联吡啶)钌(II)配合物谱带的可能机制。基于Ru(bpy)Cl水溶液的声致发光光谱与罗丹明B水溶液(具有高光致发光量子产率)的声致发光光谱的比较结果,确定了声致光致发光的可能机制在钌声致发光中不起决定性作用。分析了自由基受体(O₂、CH₃OH、Cd²⁺、I⁻)对钌声致发光的影响。声解过程中形成电子激发离子[Ru(bpy)]的最重要机制是溶液体积中涉及[Ru(bpy)]离子和水的声解自由基产物(OH、H、e⁻)的氧化还原反应中的声致化学发光。