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短光脉冲触发的选择性键形成:四中心闭环的量子动力学

Selective bond formation triggered by short optical pulses: quantum dynamics of a four-center ring closure.

作者信息

Valentini Alessio, van den Wildenberg Stephan, Remacle F

机构信息

Theoretical Physical Chemistry, RU MOLSYS, University of Liege, B4000 Liege, Belgium.

出版信息

Phys Chem Chem Phys. 2020 Oct 15;22(39):22302-22313. doi: 10.1039/d0cp03435e.

Abstract

We report bond formation induced by an ultrashort UV pulse. The photochemical process is described by quantum dynamics as coherent electronic and nuclear motions during the ultrashort pulse induced ring closure of norbornadiene to quadricyclane. Norbornadiene consists of two ethylene moieties connected by a rigid (CH2)3 bridge. Upon photoexcitation, two new sigma bonds are formed, resulting in the closure of a four-atom ring. As a medium-sized polyatomic molecule, norbornadiene exhibits a high density of strongly coupled electronic states from about 6 eV above the ground state. We report on inducing the formation of the new bonds using a short femtosecond UV pulse to pump a non-equilibrium electronic density in the open form that evolves towards the closed ring form. As the coherent electronic-nuclear coupled dynamics unfold, the excited states change character through non-adiabatic interactions and become valence states for the two new C-C bonds of quadricyclane. Our three-dimensional fully quantum dynamical grid simulations during the first 200 fs show that short UV pulses of different polarization initiate markedly different initial non-equilibrium electronic densities that follow different dynamical paths to the S0/S1 conical intersection. They lead to different initial relative yields of quadricyclane, thereby opening the way to controlling bond-making with attopulses.

摘要

我们报道了由超短紫外脉冲诱导的键形成。光化学过程由量子动力学描述为在超短脉冲诱导的降冰片二烯闭环生成四环烷过程中的相干电子和核运动。降冰片二烯由通过刚性(CH2)3桥连接的两个乙烯部分组成。光激发后,形成两个新的σ键,导致一个四元环闭合。作为一个中等大小的多原子分子,降冰片二烯在基态以上约6 eV处表现出高密度的强耦合电子态。我们报道了使用短飞秒紫外脉冲来泵浦开放形式的非平衡电子密度,使其向闭环形式演化,从而诱导新键的形成。随着相干电子 - 核耦合动力学的展开,激发态通过非绝热相互作用改变性质,并成为四环烷两个新C - C键的价态。我们在前200飞秒内进行的三维全量子动力学网格模拟表明,不同偏振的短紫外脉冲引发明显不同的初始非平衡电子密度,这些密度沿着不同的动力学路径到达S0/S1锥形交叉点。它们导致四环烷不同的初始相对产率,从而为用阿秒脉冲控制键的形成开辟了道路。

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