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Magnetic Field Effect in the Reaction of Recombination of Nitric Oxide and Superoxide Anion

机译:一氧化氮与超氧阴离子复合反应中的磁场效应

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摘要

Using a static magnetic field, we observed an important biological radical, nitric oxide, in solution by a spin-sensitive technique. Decomposition of 3-morpholinosydnonimine (SIN-1) in aqueous solution produces a radical pair consisting of nitric oxide and the superoxide anion which recombine to form peroxynitrite. The creation of this radical pair provides a favorable setting for the observation of magnetic field effects. Magnetic field effect of (1.8 ± 0.5)% on the yield of recombination was observed in a relatively high field of 4.7 T over the sampling of 96 samples. The effect is limited by extremely fast relaxation of nitric oxide in liquids due to unquenched orbital angular momentum, and develops in f-pairs via the Δg mechanism. Magnetic field effect due to a radical pair involving nitric oxide in a biological system would require either rather strong magnetic fields in the tesla range or an internal enhancer of magnetic field.
机译:使用静电磁场,我们通过自旋敏感技术观察到溶液中重要的生物自由基一氧化氮。 3-吗啉代亚砜亚胺(SIN-1)在水溶液中的分解会产生由一氧化氮和超氧阴离子组成的自由基对,它们会重组形成过氧亚硝酸盐。该自由基对的产生为观察磁场效应提供了有利的条件。在96个样品的采样中,相对较高的4.7 T磁场中观察到(1.8±0.5)%的磁场对重组产率的影响。由于未淬灭的轨道角动量,一氧化氮在液体中的极快弛豫限制了该效应,并通过Δg机理形成了f对。由于在生物系统中涉及一氧化氮的自由基对引起的磁场效应将需要特斯拉范围内的相当强的磁场或磁场的内部增强器。

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