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首页> 外文期刊>Comptes Rendus Chimie >On the role of ethylene bridge elongation in the antioxidant activity of polyhydroxylated stilbenes: A theoretical approach
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On the role of ethylene bridge elongation in the antioxidant activity of polyhydroxylated stilbenes: A theoretical approach

机译:关于乙烯桥伸长在多羟基化对苯二酚抗氧化活性中的作用:一种理论方法

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摘要

The aim of this work is to investigate the elongation effect of the conjugated links of the 7-8 double bond of trans-resveratrol and its analogs on the antioxidant activity in vacua and water using a quantum chemistry calculation by the Density Functional Theory (OFF) method. H atom transfer (HAT), single-electron transfer-proton transfer (SET-PT) and sequential proton loss electron transfer (SPLET) mechanisms were investigated. The highest occupied molecular orbital (HOMO), the lowest unoccupied molecular orbital (LUMO), and the spin density were calculated. The results reveal that the elongation of the conjugated links plays an important role in promoting the antioxidant properties of molecules because of its lowering effect on BDE, spin density, AIP, and PA values. The higher antioxidant activity of 3,4 dihydroxystilbene (A(4)) and trans,trans-3,4-dihydroxybistyryl (B-4) may be from the abstraction of the hydrogen atoms of the ortho-position hydroxyls. This abstraction can occur continuously to form a semiquinone structure, or even a quinone structure. On the other hand, the compounds bearing the 4,4'-DHS skeleton exhibit strong antioxidant activity due to their para-quinone structure. The results indicate correspondences between the theoretical and the experimental results. Moreover, our calculations suggest that the HAT mechanism is the most important and dominant mechanism in vacuo, the SPLET mechanism is the most thermodynamically favourable pathway in water, while the SET-PT mechanism is not preferred in all the environments studied. (C) 2014 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.
机译:这项工作的目的是使用密度泛函理论(OFF)的量子化学计算研究反式白藜芦醇7-8双键及其类似物的共轭链对真空和水中抗氧化活性的延长作用方法。研究了氢原子转移(HAT),单电子转移质子转移(SET-PT)和顺序质子损失电子转移(SPLET)的机理。计算出最高的占据分子轨道(HOMO),最低的未占据分子轨道(LUMO)和自旋密​​度。结果表明,共轭键的延长在降低分子的抗氧化性能方面起着重要作用,因为它降低了BDE,自旋密度,AIP和PA值。 3,4-二羟基sti(A(4))和反式,反式-3,4-二羟基双苯乙烯基(B-4)的较高抗氧化活性可能来自邻位羟基的氢原子的抽象。这种抽象可以连续发生以形成半醌结构,甚至醌结构。另一方面,带有4,4'-DHS骨架的化合物由于其对醌结构而具有很强的抗氧化活性。结果表明理论和实验结果之间的对应关系。此外,我们的计算表明,HAT机理是真空中最重要和最主要的机理,SPLET机理是水中最热力学上有利的途径,而SET-PT机理并非在所有研究的环境中都是优选的。 (C)2014年科学研究院。由Elsevier Masson SAS发布。版权所有。

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