División de Ciencias e Ingenierías, Campus León, Universidad de Guanajuato, León, Gto. 37150, México.
J Phys Chem A. 2011 Sep 1;115(34):9557-66. doi: 10.1021/jp1124298. Epub 2011 Jun 13.
Rotationally resolved fluorescence excitation spectroscopy has been used to study the dynamics, electronic distribution, and the relative orientation of the transition moment vector in several vibronic transitions of acenaphthene (ACN) and in its Ar van der Waals (vdW) complex. The 0(0)(0) band of the S(1) ← S(0) transition of ACN exhibits a transition moment orientation parallel to its a-inertial axis. However, some of the vibronic bands exhibit a transition moment orientation parallel to the b-inertial axis, suggesting a Herzberg-Teller coupling with the S(2) state. Additionally, some other vibronic bands exhibit anomalous intensity patterns in several of their rotational transitions. A Fermi resonance involving two near degenerate vibrations has been proposed to explain this behavior. The high-resolution electronic spectrum of the ACN-Ar vdW complex has also been obtained and fully analyzed. The results indicate that the weakly attached argon atom is located on top of the plane of the bare molecule at ~3.48 Å away from its center of mass in the S(0) electronic state.
旋转分辨荧光激发光谱已被用于研究并蒽(ACN)及其氩范德华(vdW)复合物的几个振动态跃迁中的动力学、电子分布和跃迁矩向量的相对取向。ACN 的 S(1) ← S(0)跃迁的 0(0)(0) 带表现出平行于其 a 惯性轴的跃迁矩取向。然而,一些振动态带表现出平行于 b 惯性轴的跃迁矩取向,表明与 S(2)态存在 Herzberg-Teller 耦合。此外,一些其他振动态带在它们的几个旋转跃迁中表现出异常的强度模式。提出了涉及两个近简并振动的费米共振来解释这种行为。还获得并全面分析了 ACN-Ar vdW 复合物的高分辨率电子光谱。结果表明,弱结合的氩原子位于裸露分子平面的顶部,在 S(0)电子态下,其质心距离约为 3.48 Å。