Kuramochi Hikaru, Tsutsumi Takuro, Saita Kenichiro, Wei Zhengrong, Osawa Masahisa, Kumar Pardeep, Liu Li, Takeuchi Satoshi, Taketsugu Tetsuya, Tahara Tahei
Molecular Spectroscopy Laboratory, RIKEN, Wako, Japan.
Ultrafast Spectroscopy Research Team, RIKEN Center for Advanced Photonics (RAP), Wako, Japan.
Nat Chem. 2024 Jan;16(1):22-27. doi: 10.1038/s41557-023-01397-6. Epub 2024 Jan 5.
Trans-cis photoisomerization is generally described by a model in which the reaction proceeds via a common intermediate having a perpendicular conformation around the rotating bond, irrespective of from which isomer the reaction starts. Nevertheless, such an intermediate has yet to be identified unambiguously, and it is often called the 'phantom' state. Here we present the structural identification of the common, perpendicular intermediate of stilbene photoisomerization using ultrafast Raman spectroscopy. Our results reveal ultrafast birth and decay of an identical, short-lived transient that exhibits a vibrational signature characteristic of the perpendicular state upon photoexcitation of the trans and cis forms. In combination with ab initio molecular dynamics simulations, it is shown that the photoexcited trans and cis forms are funnelled off to the ground state through the same, perpendicular intermediate.
反-顺式光异构化通常由一个模型来描述,在该模型中,反应通过一个围绕旋转键具有垂直构象的共同中间体进行,而不论反应从哪种异构体开始。然而,这样的中间体尚未被明确鉴定,它常被称为“幻影”态。在此,我们利用超快拉曼光谱对芪光异构化的共同垂直中间体进行了结构鉴定。我们的结果揭示了一个相同的、寿命短暂的瞬态的超快产生和衰减,该瞬态在反式和顺式形式光激发时表现出垂直态的振动特征。结合从头算分子动力学模拟表明,光激发的反式和顺式形式通过相同的垂直中间体汇聚到基态。