首页 | 本学科首页   官方微博 | 高级检索  
     检索      


Quantum-Chemical Simulation of the Solvent Effect on Spontaneous Emission of Singlet Oxygen
Authors:N V Ivashin  E E Shchupak
Institution:1.Stepanov Institute of Physics,National Academy of Sciences of Belarus,Minsk,Belarus
Abstract:A molecular simulation of the solvent effect on radiative rate constant k r of singlet oxygen is carried out. This study included a search for the most probable conformations of the complexes of molecules of singlet oxygen and ten solvents and calculation of dipole moments M of transitions a1Δ g –b1Σ g + (M a–b ) and a1Δ g X3Σ g - (M a–X ) of the oxygen molecule for them. Averaging of M a–b by conformations, taking into account the probability of their formation for complexes without atoms with a large atomic number (Cl, S), yields values that, as a rule, correlate well with the behavior of k r in the experiment. Taking into account the possibility of decreasing the distance (compared to equilibrium) between molecules in a collision complex at room temperature made it possible to achieve satisfactory agreement of the calculated and experimental data also for complexes with CCl4, C2Cl4, and CS2. The obtained data indicate that a number of factors affect k r . The correlation of k r with molecular polarizability in a number of cases is due, on the one hand, to its effect on the strength of dispersion interactions in the complex and, on the other hand, to the fact that it to some extent reflects the position of the upper filled orbitals of the solvent molecule. Both factors affect the degree of mixing of the π orbitals of the singlet oxygen molecule with the orbitals of the solvent molecule, which, as was found earlier, facilitates the activation of the a1Δ g –b1Σ g + transition and the borrowing of its intensity by the a1Δ g X3Σ g - transition.
Keywords:
本文献已被 SpringerLink 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号