Abiola Temitope T, Toldo Josene M, do Casal Mariana T, Flourat Amandine L, Rioux Benjamin, Woolley Jack M, Murdock Daniel, Allais Florent, Barbatti Mario, Stavros Vasilios G
Department of Chemistry, University of Warwick, Gibbet Hill Road, Coventry, CV4 7AL, UK.
Aix Marseille Université, CNRS, ICR, Marseille, France.
Commun Chem. 2022 Oct 31;5(1):141. doi: 10.1038/s42004-022-00757-6.
Sinapate esters have been extensively studied for their potential application in 'nature-inspired' photoprotection. There is general consensus that the relaxation mechanism of sinapate esters following photoexcitation with ultraviolet radiation is mediated by geometric isomerization. This has been largely inferred through indirect studies involving transient electronic absorption spectroscopy in conjunction with steady-state spectroscopies. However, to-date, there is no direct experimental evidence tracking the formation of the photoisomer in real-time. Using transient vibrational absorption spectroscopy, we report on the direct structural changes that occur upon photoexcitation, resulting in the photoisomer formation. Our mechanistic analysis predicts that, from the photoprepared ππ* state, internal conversion takes place through a conical intersection (CI) near the geometry of the initial isomer. Our calculations suggest that different CI topographies at relevant points on the seam of intersection may influence the isomerization yield. Altogether, we provide compelling evidence suggesting that a sinapate ester's geometric isomerization can be a more complex dynamical process than originally thought.
芥子酸酯因其在“仿生”光保护方面的潜在应用而受到广泛研究。人们普遍认为,芥子酸酯在紫外线光激发后的弛豫机制是由几何异构化介导的。这在很大程度上是通过间接研究推断出来的,这些研究涉及瞬态电子吸收光谱与稳态光谱相结合。然而,迄今为止,尚无实时跟踪光异构体形成的直接实验证据。利用瞬态振动吸收光谱,我们报道了光激发后发生的直接结构变化,从而导致光异构体的形成。我们的机理分析预测,从光制备的ππ*态开始,内转换通过初始异构体几何结构附近的锥形交叉点(CI)发生。我们的计算表明,交叉缝上相关点处不同的CI拓扑结构可能会影响异构化产率。总之,我们提供了令人信服的证据,表明芥子酸酯的几何异构化可能是一个比最初认为的更为复杂的动力学过程。