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Molecular Oxygen Spin-Lattice Relaxation in Solutions Measured by Proton Magnetic Relaxation Dispersion

机译:质子磁弛豫弥散测量溶液中的分子氧自旋晶格弛豫

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Proton spin-lattice relaxation rate constants have been measured as a function of magnetic field strength for water, water-glycerol solution, cyclohexane, methanol, benzene, acetone, aceto-nitrile, and dimethyl sulfoxide. The magnetic relaxation dispersion is well approximated by a Lorentzian shape. The origin of the relaxation dispersion is identified with the paramagnetic contribution from molecular oxygen. In the small molecule cases studied here, the effective correlation time for the electron-nuclear coupling may include contributions from both translational diffusion and the electron T_(1). The electron T_(1) for molecular oxygen dissolved in several solvents was found to be approximately 7.5 ps and nearly independent of solvent or viscosity.
机译:对于水,水-甘油溶液,环己烷,甲醇,苯,丙酮,乙腈和二甲基亚砜,质子自旋晶格弛豫速率常数已作为磁场强度的函数进行了测量。磁弛豫色散通过洛伦兹形状很好地近似。弛豫分散体的起源是由分子氧的顺磁作用确定的。在这里研究的小分子情况下,电子-核耦合的有效相关时间可能包括翻译扩散和电子T_(1)的贡献。发现溶解在几种溶剂中的分子氧的电子T_(1)约为7.5 ps,几乎与溶剂或粘度无关。

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