使用密度函数理论评估烯异构体的抗氧化特性
Baggya Sharmali Wickramanayaka Karunarathna1, Thashini Kavindiyani Gunawardhana2, G M Supun Tharaka Gajasinghe3
1Department of Chemistry, Faculty of Science, Eastern University Sri Lanka, Chenkalady, Sri Lanka. karunarathnabsw@esn.ac.lk.
Journal of molecular modeling
|June 4, 2025
概括
5-cis烯异构体表现出最强的抗氧化特性,作为一种优异的激素清除剂. 计算分析通过原子转移机制证实了它的热力学和动力学优势相对于其他同位素.
科学领域:
- 计算化学的计算化学
- 分子建模分子建模
- 抗氧化剂研究 抗氧化剂研究
背景情况:
- 喜烯是一种来自水果和蔬菜的胡卜素,具有潜在的抗氧化特性.
- 柳科的异构体表现出不同的抗氧化能力.
- 了解这些差异是利用利科对健康的好处的关键.
研究的目的:
- 以计算方式研究和比较柳科异构体的抗氧化特性.
- 阐明这些同位素所采用的主要激素清除机制.
- 为了确定最强大的抗氧化剂 - - 利科同位素.
主要方法:
- 密度函数理论 (DFT) 计算使用 ωB97X-D/6-31+G(d,p) 级.
- 全球描述参数和边界分子轨道的分析.
- 通过QST3和IRC计算,研究原子转移 (HAT),SETPT和SPLET机制.
主要成果:
- 5-cis异构体表现出最高的抗氧化潜力,其次是全跨,9-cis和13-cis异构体.
- 原子转移 (HAT) 机制被确定为主要的激素清理途径.
- 5-cis异构体表现出最低的键解离能和HAT的有利激活能,这表明它具有卓越的热力学和动力学抗氧化活性.
结论:
- 在研究的配置中,5-cis烯同位素是最有效的抗氧化剂.
- 它的卓越性能归因于热力学优势和动力效率在通过HAT机制的激素清理.
- 这一发现为莱科异构体的不同抗氧化潜力提供了分子基础.
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