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单阳离子、中性、单阴离子和双阴离子氧化态的双(卟啉基)丁二炔的含时密度泛函分子轨道和激发态计算

Time-dependent density functional molecular orbital and excited state calculations on bis(porphyrinyl)butadiynes in the monocationic, neutral, monoanionic, and dianionic oxidation states.

作者信息

Wilson Gregory J, Arnold Dennis P

机构信息

School of Physical and Chemical Sciences, Queensland University of Technology, G.P.O. Box 2434, Brisbane, Australia 4001.

出版信息

J Phys Chem A. 2005 Jul 14;109(27):6104-13. doi: 10.1021/jp0507041.

Abstract

We report a theoretical study of the multiple oxidation states (1+, 0, 1-, and 2-) of a meso,meso-linked diporphyrin, namely bis[10,15,20-triphenylporphyrinatozinc(II)-5-yl]butadiyne (4), using Time-Dependent Density Functional Theory (TDDFT). The origin of electronic transitions of singlet excited states is discussed in comparison to experimental spectra for the corresponding oxidation states of the close analogue bis[10,15,20-tris[3',5'-di-tert-butylphenyl]porphyrinatozinc(II)-5-yl]butadiyne (3). The latter were measured in previous work under in situ spectroelectrochemical conditions. Excitation energies and orbital compositions of the excited states were obtained for these large delocalized aromatic radicals, which are unique examples of organic mixed-valence systems. The radical cations and anions of butadiyne-bridged diporphyrins such as 3 display characteristic electronic absorption bands in the near-IR region, which have been successfully predicted with use of these computational methods. The radicals are clearly of the "fully delocalized" or Class III type. The key spectral features of the neutral and dianionic states were also reproduced, although due to the large size of these molecules, quantitative agreement of energies with observations is not as good in the blue end of the visible region. The TDDFT calculations are largely in accord with a previous empirical model for the spectra, which was based simplistically on one-electron transitions among the eight key frontier orbitals of the C4 (1,4-butadiyne) linked diporphyrins.

摘要

我们使用含时密度泛函理论(TDDFT),对一种中位、中位相连的双卟啉,即双[10,15,20-三苯基卟啉锌(II)-5-基]丁二炔(4)的多种氧化态(1+、0、1-和2-)进行了理论研究。与紧密类似物双[10,15,20-三[3',5'-二叔丁基苯基]卟啉锌(II)-5-基]丁二炔(3)相应氧化态的实验光谱相比,讨论了单重激发态电子跃迁的起源。后者是在之前的工作中在原位光谱电化学条件下测量得到的。对于这些大的离域芳香族自由基,获得了激发态的激发能和轨道组成,它们是有机混合价体系的独特实例。丁二炔桥连双卟啉如3的自由基阳离子和阴离子在近红外区域显示出特征性的电子吸收带,使用这些计算方法已成功预测到这些吸收带。这些自由基显然属于“完全离域”或III类。中性和双阴离子态的关键光谱特征也得到了再现,尽管由于这些分子尺寸较大,在可见光区域的蓝色端,能量与观测值的定量一致性并不理想。TDDFT计算在很大程度上与之前的光谱经验模型一致,该模型简单地基于C4(1,4-丁二炔)连接的双卟啉的八个关键前沿轨道之间的单电子跃迁。

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