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分子苯胺簇。二。低能电子激发态。

Molecular aniline clusters. II. The low-lying electronic excited states.

机构信息

Institute of Physical and Theoretical Chemistry, University of Regensburg, Universitätsstraße 31, D-93040 Regensburg, Germany.

出版信息

J Chem Phys. 2010 Oct 7;133(13):134307. doi: 10.1063/1.3488227.

Abstract

The lowest electronically excited states of the aniline dimer and trimer related to the lowest π(∗)←π transition of the monomer are investigated by applying time-dependent coupled cluster theory, primarily at the level of the (spin-component-scaled) CC2 model. Minimum energy structures in the vicinity of the Franck-Condon points were determined on the individual potential energy surfaces. For the dimer we find an excimer and a head-to-tail configuration (with the monomers substantially displaced relative to the ground state minimum) for the lowest (dark) and second lowest (bright) states, respectively. The excitation is delocalized on both chromophores for both of these states. For the trimer three distinct minima with quite different hydrogen-bonding arrangements are found for the three lowest states. In strong contrast to the dimer the excitation here is clearly localized on the individual aniline chromophores for each of these three states. One of the three geometries is rather similar to the ground state minimum, while the two others are rather different and thus have presumably quite small Franck-Condon factors. It can be expected that only the electronic origin of the first conformer can eventually be detected in the absorption spectrum of the trimer, provided that it is separated by high-enough barriers from other, energetically lower configurations.

摘要

采用含时耦合簇理论(主要基于自旋分量标度的 CC2 模型)研究了与单体最低π(∗)←π跃迁相关的苯胺二聚体和三聚体的最低电子激发态。在 Franck-Condon 点附近的各个势能面上确定了最低能量结构。对于二聚体,我们发现最低(暗态)和次低(亮态)态分别为激态和头尾构型(单体相对于基态最小值有较大位移)。对于这两个态,激发都是在两个发色团上离域的。对于三聚体,在三个最低态下发现了三个具有不同氢键排列的不同极小值。与二聚体形成鲜明对比的是,对于这三个态,激发明显定域在各个苯胺发色团上。这三个构象中的一个与基态最小值非常相似,而另外两个则非常不同,因此推测它们的 Franck-Condon 因子相当小。可以预期,只有第一构象的电子起源最终可以在三聚体的吸收光谱中被检测到,前提是它与其他能量较低的构象之间存在足够高的势垒。

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