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Radical trapping properties of imidazolyl nitrones

机译:咪唑基硝酮的自由基捕获性能

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The ability of ten imidazolyl nitrones to directly scavenge free radicals (R-.) generated in polar ((OH)-O-., O-2(.-), SO3.-, cysteinyl, -CH3) or in apolar (CH3-(CH)-C-.-CH3) media has been studied. When oxygen or sulfur-centered radicals are generated in polar media, EPR spectra are not or weakly observed with simple spectral features. Strong line intensities and more complicated spectra are observed with the isopropyl radical generated in an apolar medium. Intermediate results are obtained with (CH3)-C-. generated in a polar medium. EPR demonstrates the ability of these nitrones to trap radicals to the nitrone C-(alpha) atom (alpha radical adduct) and to the imidazol C-(5) atom (5-radical adduct). Beside the nucleophilic addition of the radical to the C-(alpha) atom, the EPR studies suggest a two-step mechanism for the overall reaction of R-. attacking the imidazol core. The two steps seem to occur very fast with the (OH)-O-. radical obtained in a polar medium and slower with the isopropyl radical prepared in benzene. In conclusion, imidazolyl nitrones present a high capacity to trap and stabilize carbon-centered radicals.
机译:十个咪唑基硝酮直接清除极性((OH)-O-。,O-2(.-),SO3.-,半胱氨酰,-CH3)或非极性(CH3)中产生的自由基(R-。)的能力-(CH)-C -.- CH3)媒体已被研究。当在极性介质中产生以氧或硫为中心的自由基时,由于具有简单的光谱特征,因此无法或几乎看不到EPR光谱。在非极性介质中产生的异丙基会观察到强的谱线强度和更复杂的光谱。用(CH3)-C-获得中间结果。在极性介质中产生。 EPR证明这些硝酮具有将自由基捕获到硝酮C-α原子(α自由基加合物)和咪唑C-(5)原子(5-自由基加合物)的能力。 EPR研究表明,除了自由基向C-α原子的亲核加成外,还提出了R-整体反应的两步机制。攻击咪唑的核心。 (OH)-O-这两个步骤似乎很快发生。在极性介质中获得的自由基,在苯中制备的异丙基自由基则更慢。总之,咪唑基硝酮具有很高的捕获和稳定以碳为中心的自由基的能力。

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