Department of Chemistry, University of Warwick, Gibbet Hill Road, Coventry, CV4 7AL, United Kingdom.
Faculty of Engineering and Physical Sciences, University of Surrey, 388 Stag Hill, Guildford, GU2 7XH, United Kingdom.
Chemphyschem. 2020 Sep 2;21(17):2006-2011. doi: 10.1002/cphc.202000429. Epub 2020 Aug 4.
Sinapoyl malate is a natural plant sunscreen molecule which protects leaves from harmful ultraviolet radiation. Here, the ultrafast dynamics of three sinapoyl malate derivatives, sinapoyl L-dimethyl malate, sinapoyl L-diethyl malate and sinapoyl L-di-t-butyl malate, have been studied using transient electronic absorption spectroscopy, in a dioxane and methanol solvent environment to investigate how well preserved these dynamics remain with increasing molecular complexity. In all cases it was found that, upon photoexcitation, deactivation occurs via a trans-cis isomerisation pathway within ∼20-30 ps. This cis-photoproduct, formed during photodeactivation, is stable and longed-lived for all molecules in both solvents. The incredible levels of conservation of the isomerisation pathway with increased molecular complexity demonstrate the efficacy of these molecules as ultraviolet photoprotectors, even in strongly perturbing solvents. As such, we suggest these molecules might be well-suited for augmentations to further improve their photoprotective efficacy or chemical compatibility with other components of sunscreen mixtures, whilst conserving their underlying photodynamic properties.
芥子酰基丙二酸酯是一种天然的植物防晒分子,可保护叶片免受有害的紫外线辐射。在这里,使用瞬态电子吸收光谱法研究了三种芥子酰基丙二酸酯衍生物(芥子酰基 L-二甲酯、芥子酰基 L-二乙酯和芥子酰基 L-二叔丁酯)的超快动力学,在二氧六环和甲醇溶剂环境中,研究了随着分子复杂性的增加,这些动力学的稳定性如何。在所有情况下,都发现,光激发后,通过约 20-30 ps 的顺式-反式异构化途径发生失活。在两种溶剂中,所有分子的光失活过程中形成的这种顺式光产物都是稳定的且长寿命的。随着分子复杂性的增加,异构化途径的惊人稳定性证明了这些分子作为紫外线光保护剂的功效,即使在强烈干扰的溶剂中也是如此。因此,我们建议这些分子可能非常适合增强其光保护效果,或提高其与防晒霜混合物中其他成分的化学兼容性,同时保持其潜在的光动力特性。