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Magnetic field effect on recombination of radicals diffusing on a two-dimensional plane

机译:关于二维平面上扩散的自由基重组的磁场效应

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Magnetic Field Effects (MFEs) on the recombination of radicals, which diffuse on an infinite plane, are studied theoretically. The case of spin-selective diffusion-controlled recombination of Radical Pairs (RPs) starting from a random spin state is considered assuming uniform initial distribution of the radicals. In this situation, reaction kinetics is described by a time-dependent rate coefficient K(t), which tends to zero at long times. Strong MFEs on K(t) are predicted that originate from the Delta g and hyperfine driven singlet-triplet mixing in the RP. The effects of spin relaxation on the magnetic field are studied, as well as the influence of the dipole-dipole interaction between the electron spins of the RP. In the two-dimensional case, this interaction is not averaged out by diffusion and it strongly affects the MFE. The results of this work are of importance for interpreting MFEs on lipid peroxidation, a magnetosensitive process occurring on two-dimensional surfaces of cell membranes.
机译:从理论上研究了在无限平面上漫射的基团重组的磁场效应(MFE)。假设自由基的均匀初始分布均匀,考虑从随机旋转状态开始的自由基对(RPS)的自由基对(RPS)的旋转选择性扩散控制重组的情况。在这种情况下,通过时间依赖性速率系数K(t)描述了反应动力学,其长时间趋于为零。 k(t)上的强mFE在k(t)上源自Δg和rp中的δg和hyperfine驱动的单态三态混合。研究了旋转弛豫对磁场的影响,以及RP的电子旋转之间的偶极偶极相互作用的影响。在二维情况下,这种相互作用不通过扩散平均,并且强烈影响MFE。该作品的结果对于解释脂质过氧化的MFE的结果具有重要性,在细胞膜的二维表面上发生磁敏法。

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