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不对称方酸菁的结构、键合及最低能量跃迁:一项计算研究

Structure, bonding, and lowest energy transitions in unsymmetrical squaraines: a computational study.

作者信息

Yesudas K, Chaitanya G Krishna, Prabhakar Ch, Bhanuprakash K, Rao V Jayathirtha

机构信息

Inorganic Chemistry Division, Indian Institute of Chemical Technology, Hyderabad-500 007, India.

出版信息

J Phys Chem A. 2006 Oct 19;110(41):11717-29. doi: 10.1021/jp064074u.

Abstract

Natural resonance theory (NRT) and natural bond orbital (NBO) analysis have been carried out on a simple symmetrical and an unsymmetrical substituted squaraine with a view of understanding the structure of the latter type of squaraines. It is found that there are some fundamental differences in the structure and bonding between these two types of squaraines particularly in the resonance weights and delocalization energies. These differences are expected to reflect in the low energy transitions and charge transfer in these squaraines. To investigate this, the nature of the lowest energy transitions occurring on excitation in unsymmetrical squaraines has been studied using high-level symmetry adapted cluster-configuration interaction method (SAC/SAC-CI) and compared with reported experimental observations. In general the agreement with the experimental data is very good. The transition dipole moment always lies on the pi-backbone and is quite large in magnitude. The ground state dipole moment in some cases does not change in the excited state upon excitation while in some other cases there is a large reduction/enhancement in the magnitude indicative of some charge rearrangement in this direction. Inclusion of the solvent using the IEFPCM model, a slightly better agreement with the experiment is found in some cases. Studies are carried out with a different basis set and it is found that the change in basis set has very little effect on the transition energies. In the case of weak side donor groups attached to the central ring the larger charge transfer to the central acceptor ring in general takes place from the O- atoms of the squarylium moiety while in the case of strong donors the charge transfer from the O- atoms to the central rings drop down. We have not observed any correlation between the charge transfer in the excited state to the central ring from the side donor groups and the lowest energy excitation in the molecules. Reduction of the HOMO-LUMO gap (an indication of increase of the diradicaloid character) always leads to a bathochromic shift.

摘要

为了理解后一种类型方酸菁的结构,对一种简单对称的和一种不对称取代的方酸菁进行了自然共振理论(NRT)和自然键轨道(NBO)分析。发现这两种类型的方酸菁在结构和键合方面存在一些根本差异,特别是在共振权重和离域能方面。预计这些差异会反映在这些方酸菁的低能跃迁和电荷转移中。为了研究这一点,使用高级对称适配簇-组态相互作用方法(SAC/SAC-CI)研究了不对称方酸菁激发时发生的最低能量跃迁的性质,并与报道的实验观察结果进行了比较。总体而言,与实验数据的吻合度非常好。跃迁偶极矩总是位于π骨架上,且大小相当大。在某些情况下,基态偶极矩在激发到激发态时不变,而在其他一些情况下,其大小会大幅减小/增大,这表明在这个方向上有一些电荷重排。使用IEFPCM模型包含溶剂后,在某些情况下与实验的吻合度稍好一些。使用不同的基组进行了研究,发现基组的变化对跃迁能量的影响非常小。在连接到中心环的侧链供体基团较弱的情况下,一般较大的电荷转移是从方酸部分的O原子转移到中心受体环,而在供体较强的情况下,从O原子到中心环的电荷转移会下降。我们没有观察到激发态时从侧链供体基团到中心环的电荷转移与分子中最低能量激发之间存在任何相关性。HOMO-LUMO能隙的减小(表明双自由基特征增加)总是导致红移。

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