DFT investigation of the reaction of cyanidin with hydroxyl radical

D. Milenkovic, J. M. Markovic, Z. Marković
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引用次数: 1

Abstract

Cyanidin, as one important plant pigment, was theoretically (at M05-2X/6-311+G(d, p) level of theory) investigated for its ability to scavenge potentially, highly damaging hydroxyl radical. The applied method successfully reproduces the bond dissociation enthalpy (BDE), the ionization potential (IP) and proton affinity (PA). The HAT mechanism is most favorable reaction pathway for antioxidative action of cyanidin in the gas phase. On the other hand, the SPLET mechanism is most favorable reaction pathway for antioxidative action of cyanidin in the aqueous phase. Mechanistic investigations of antioxidative action of cyanidin in reaction with the hydroxyl radical confirmed that HAT is the dominant reaction pathway in the gas phase, and that the 4' position is most reactive.
花青素与羟基自由基反应的DFT研究
花青素作为一种重要的植物色素,在理论上(在M05-2X/6-311+G(d, p)水平上)研究了其清除潜在的、高度有害的羟基自由基的能力。所应用的方法成功地再现了键解离焓(BDE)、电离势(IP)和质子亲和力(PA)。HAT机制是花青素气相抗氧化最有利的反应途径。另一方面,SPLET机制是花青素在水相中最有利的抗氧化反应途径。花青素与羟基自由基反应的抗氧化机理研究证实,在气相中,HAT是主要的反应途径,且4′位置反应最活跃。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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