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Theoretical elucidation of structure-activity relationship of flavonoid antioxidants 被引量:7
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作者 张红雨 《Science China Chemistry》 SCIE EI CAS 1999年第1期106-112,共7页
AM1 method was emyloyed to calculate flavonoid antioxidants, and the results obtained are as follows. Firstly, flavonoid hydroxyls atortho position were more active than the hydroxyls atmeta position in scavenging oxy... AM1 method was emyloyed to calculate flavonoid antioxidants, and the results obtained are as follows. Firstly, flavonoid hydroxyls atortho position were more active than the hydroxyls atmeta position in scavenging oxygen-free raidicals, which resulted from the facts that (i) the former were stabilized by forming intramolecular hydrogen bond and (ii)ortho benzocluinone formed in the former structures through resonance, which resulted in large percentage of distribution of spin density or1ortho oxygen and low internal energy. Secondly, electron-attracting effect of ring C of chromone-flavonoids showed some passive efftrts on hydroxyls of ring A, making the OH less active. As ring C had little effect on ring B and hydroxyls of ring B in most flavonoids were atortho position, the rule summarized from experiments showing that hydroxyls of ring B were more active in scavenging oxygen-free radicals was elucidated. 展开更多
关键词 flavunoid antioxidants AM1 method structure-activity relationship theoretical elucidation
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