Tang Jie, You Guohua, Ruan Lu, Lu Yi, Wen Bianying, Wu Sizhu
State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, PR China.
College of Information Science & Technology, Beijing University of Chemical Technology, Beijing 100029, PR China.
ACS Omega. 2021 Mar 4;6(10):7119-7126. doi: 10.1021/acsomega.1c00120. eCollection 2021 Mar 16.
Natural antioxidants are essential potential sources for protecting the oxidation of food oils. However, until now, the mechanisms are still not very clear, especially from the quantitatively theoretical level to analyze the antioxidant behavior. In this work, the micromechanisms of the antioxidant behavior affected by polarity in the olive oil were systematically investigated by experimental and computational methods. The results showed that the polarity of antioxidants decreased with the growth of the alkyl chains, which had multiple impacts on the effectiveness of antioxidants. The excessive polarity gap between the antioxidant and oil molecules would cause the antioxidant to be dispersed at the oil-air interface, which could enhance their antioxidant ability. Meanwhile, the antioxidants with longer alkyl chains had lower polarity and better dispersibility but decreased mobility. Hence, compared with other antioxidants, medium polarity antioxidants presented both good dispersion and relatively suitable migration, indicating that they would have an optimal antioxidant effect.
天然抗氧化剂是保护食用油氧化的重要潜在来源。然而,到目前为止,其作用机制仍不是很清楚,尤其是从定量理论层面来分析抗氧化行为。在这项工作中,通过实验和计算方法系统地研究了橄榄油中极性对抗氧化行为的微观机制。结果表明,抗氧化剂的极性随着烷基链的增长而降低,这对抗氧化剂的有效性有多重影响。抗氧化剂与油分子之间过大的极性差距会导致抗氧化剂分散在油-气界面,这可以增强它们的抗氧化能力。同时,具有较长烷基链的抗氧化剂极性较低、分散性较好但迁移率降低。因此,与其他抗氧化剂相比,中等极性的抗氧化剂既具有良好的分散性又具有相对合适的迁移性,表明它们将具有最佳的抗氧化效果。