Miura Tomoaki, Murai Hisao
Graduate School of Science and Engineering, Faculty of Science, Shizuoka University, 836 Oya, Surugaku, Shizuoka 422-8529, Japan.
J Phys Chem A. 2008 Mar 27;112(12):2526-32. doi: 10.1021/jp077505x. Epub 2008 Feb 29.
The singlet-triplet spin-state mixing process of a singlet-born radical pair confined in a sodium dodecyl sulfate (SDS) micelle was studied by observing the nanosecond switched external magnetic field (SEMF) effect on the transient absorption signals. A long-lived singlet radical pair is generated by the photoinduced bond cleavage reaction of tetraphenylhydrazine in an SDS micelle. Application of off-on type SEMF results in the increase of the free radical yield contrary to the decrease produced by an applied static magnetic field. The S-T mixing process in low magnetic field was observed by means of a delay-shift SEMF experiment. Observed incoherent mixing processes are explained in terms of the interplay between coherent hyperfine interaction and fast dephasing processes caused by the fluctuation of electron-spin interactions. Singlet-triplet and triplet-triplet dephasing rate constants are determined independently to be 2 x 10(8) and 0.2 x 10(8) s(-)1, respectively, by a simulation based on a modified single-site Liouville equation. This is the first direct observation of the incoherent spin-state mixing process at magnetic fields comparable to the hyperfine interactions of the radical pair.
通过观察纳秒级开关外部磁场(SEMF)对瞬态吸收信号的影响,研究了限制在十二烷基硫酸钠(SDS)胶束中的单重态产生的自由基对的单重态-三重态自旋态混合过程。在SDS胶束中,通过四苯基肼的光诱导键裂解反应产生长寿命的单重态自由基对。与施加静态磁场导致的自由基产率降低相反,施加开-关型SEMF会导致自由基产率增加。通过延迟移位SEMF实验观察了低磁场中的S-T混合过程。观察到的非相干混合过程可以用相干超精细相互作用与由电子自旋相互作用波动引起的快速退相过程之间的相互作用来解释。基于修正的单位点刘维尔方程进行模拟,分别独立确定单重态-三重态和三重态-三重态退相速率常数为2×10⁸和0.2×10⁸ s⁻¹。这是首次在与自由基对的超精细相互作用相当的磁场下直接观察到非相干自旋态混合过程。