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环丙烷自由基阳离子中的多模 Jahn-Teller 和赝 Jahn-Teller 相互作用:复杂的振动光谱和非辐射衰变动力学

Multimode Jahn-Teller and pseudo-Jahn-Teller interactions in the cyclopropane radical cation: complex vibronic spectra and nonradiative decay dynamics.

作者信息

Venkatesan T S, Mahapatra S, Meyer H-D, Köppel H, Cederbaum L S

机构信息

School of Chemistry, University of Hyderabad, Hyderabad 500 046, India.

出版信息

J Phys Chem A. 2007 Mar 15;111(10):1746-61. doi: 10.1021/jp0668347. Epub 2007 Feb 15.

Abstract

The complex vibronic spectra and the nonradiative decay dynamics of the cyclopropane radical cation (CP+) are simulated theoretically with the aid of a time-dependent wave packet propagation approach using the multireference time-dependent Hartree scheme. The theoretical results are compared with the experimental photoelectron spectrum of cyclopropane. The ground and first excited electronic states of CP+ are of X2E' and A2E'' type, respectively. Each of these degenerate electronic states undergoes Jahn-Teller (JT) splitting when the radical cation is distorted along the degenerate vibrational modes of e' symmetry. The JT split components of these two electronic states can also undergo pseudo-Jahn-Teller (PJT)-type crossings via the vibrational modes of e'', a1'' and a2'' symmetries. These lead to the possibility of multiple multidimensional conical intersections and highly nonadiabatic nuclear motions in these coupled manifolds of electronic states. In a previous publication [J. Phys. Chem. A 2004, 108, 2256], we investigated the JT interactions alone in the X2E' ground electronic manifold of CP+. In the present work, the JT interactions in the A2E'' electronic manifold are treated, and our previous work is extended by considering the coupling between the X2E' and A2E'' electronic states of CP+. The nuclear dynamics in this coupled manifold of two JT split doubly degenerate electronic states is simulated by considering fourteen active and most relevant vibrational degrees of freedom. The vibronic level spectra and the ultrafast nonradiative decay of the excited cationic states are examined and are related to the highly complex entanglement of electronic and nuclear degrees of freedom in this prototypical molecular system.

摘要

借助多参考含时哈特里方法的含时波包传播方法,对环丙烷自由基阳离子(CP⁺)的复杂振转光谱和非辐射衰变动力学进行了理论模拟。将理论结果与环丙烷的实验光电子能谱进行了比较。CP⁺的基态和第一激发电子态分别为X²E′和A²E″型。当自由基阳离子沿e′对称的简并振动模式发生畸变时,这些简并电子态中的每一个都会经历 Jahn - Teller(JT)分裂。这两个电子态的 JT 分裂分量也可以通过e″、a₁″和a₂″对称的振动模式发生赝 Jahn - Teller(PJT)型交叉。这些导致在这些电子态的耦合流形中存在多个多维锥形交叉和高度非绝热核运动的可能性。在之前的一篇论文[《物理化学杂志A》2004年,108卷,2256页]中,我们仅研究了CP⁺的X²E′基态电子流形中的JT相互作用。在本工作中,对A²E″电子流形中的JT相互作用进行了处理,并通过考虑CP⁺的X²E′和A²E″电子态之间的耦合扩展了我们之前的工作。通过考虑14个活跃且最相关的振动自由度,模拟了这两个JT分裂的双重简并电子态的耦合流形中的核动力学。研究了激发阳离子态的振转能级光谱和超快非辐射衰变,并将其与这个典型分子系统中电子和核自由度的高度复杂纠缠联系起来。

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