Synergistic Effect of Binary Compositions of Pentadigalloyl Glucose with Plant Phenols in the Reaction with Hydrazyl Radical

IF 1.3 4区 化学 Q4 CHEMISTRY, PHYSICAL Kinetics and Catalysis Pub Date : 2024-11-04 DOI:10.1134/S0023158424601839
N. I. Belaya, A. V. Belyi, O. M. Zarechnaya, N. V. Mikhaylova
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Abstract

It has been established that the maximum synergistic effect (more than 100%) is characteristic of the binary mixtures of pentadigalloyl glucose mixed with protocatechuic and vanillic acids in a ratio of 90 : 10 vol % in the reaction with the 2,2'-diphenyl-1-picrylhydrazyl radical in benzene. With an increase in the polarity of the solvent (dimethyl sulfoxide), an increase in the maximum synergistic effect by 15–20% on the average is observed. Using the methods of quantum chemical calculations and difference UV spectroscopy, it is shown that the resulting effect of the compositions of pentadigalloyl glucose with monomeric phenols depends on the following two mechanisms of synergistic action: the first mechanism is related to the formation of the intermolecular H-complex between reagents, which exhibits higher antiradical activity than that of the initial compounds; the second one is associated with the reduction of oxidized forms of the weaker antioxidant (monomeric phenol) by the stronger antioxidant (pentadigalloyl glucose). The mixture of pentadigalloyl glucose with methoxylated forms of plant phenols is a promising synergistic composition with high antiradical activity.

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五二甲酰基葡萄糖与植物酚的二元组合在与肼基自由基反应中的协同效应
研究发现,在苯中与 2,2'-二苯基-1-苦基肼自由基反应时,五二甲氧基葡萄糖与原儿茶酸和香草酸以 90 : 10 的体积比混合的二元混合物具有最大的协同效应(超过 100%)。随着溶剂(二甲亚砜)极性的增加,观察到最大协同效应平均增加了 15-20%。利用量子化学计算和差分紫外光谱法,可以看出五二甲酰基葡萄糖与单体酚的组成所产生的效果取决于以下两种协同作用机制:第一种机制与试剂之间形成分子间 H-络合物有关,这种络合物的抗自由基活性高于初始化合物;第二种机制与较强的抗氧化剂(五偏二甲酰基葡萄糖)还原较弱的抗氧化剂(单体苯酚)的氧化形式有关。五没食子酰葡萄糖与植物酚的甲氧基化形式的混合物是一种很有前途的协同组合物,具有很高的抗自由基活性。
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来源期刊
Kinetics and Catalysis
Kinetics and Catalysis 化学-物理化学
CiteScore
2.10
自引率
27.30%
发文量
64
审稿时长
6-12 weeks
期刊介绍: Kinetics and Catalysis Russian is a periodical that publishes theoretical and experimental works on homogeneous and heterogeneous kinetics and catalysis. Other topics include the mechanism and kinetics of noncatalytic processes in gaseous, liquid, and solid phases, quantum chemical calculations in kinetics and catalysis, methods of studying catalytic processes and catalysts, the chemistry of catalysts and adsorbent surfaces, the structure and physicochemical properties of catalysts, preparation and poisoning of catalysts, macrokinetics, and computer simulations in catalysis. The journal also publishes review articles on contemporary problems in kinetics and catalysis. The journal welcomes manuscripts from all countries in the English or Russian language.
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