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Experimental and Theoretical Electron Paramagnetic Resonance (EPR) Study on the Temperature-Dependent Structural Changes of Methylsulfanylmethane

机译:甲基硫烷基甲烷的温度依赖性结构变化的实验和理论电子顺磁共振(EPR)研究

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摘要

Methylsulfonylmethane (or dimethyl sulfone), a naturally produced and vitally important organosulfur compound in living organisms, was irradiated with gamma rays, and the produced radicals were investigated using electron paramagnetic resonance spectroscopy at different temperatures. The structure and behavior of the radical changed when the temperatures varied. The hyperfine splitting of the CH3 group was small, and the 33S splitting was relatively high between 80 and −50 °C. When the temperature was between −50 and −160 °C, the 33S splitting became small and the CH3 splitting was higher. However, the group kept rotating; therefore, only the isotropic splitting values were measured, and the g-values were anisotropic. When the temperature decreased below −180 °C, the CH3 group stopped rotating, and the hydrogen splitting values became nonequivalent due to an inhomogeneous electron distribution. The observed structures can be explained by referring to both the experimental and theoretically calculated values reported.
机译:用γ射线辐照甲基磺酰甲烷(或二甲基砜),这是生物体内一种自然产生的且至关重要的有机硫化合物,并使用电子顺磁共振波谱在不同温度下研究了产生的自由基。当温度变化时,自由基的结构和行为也会发生变化。 CH3组的超细分裂很小,在80至-50°C之间, 33 S分裂较高。当温度在-50至-160°C之间时, 33 S裂解变小,而CH3裂解变高。但是,小组不断旋转。因此,仅测量了各向同性分裂值,而g值是各向异性的。当温度降低至-180℃以下时,CH 3基团停止旋转,并且由于电子分布不均,氢分裂值变得不等价。可以通过参考报告的实验值和理论计算值来解释观察到的结构。

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