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采用计算技术对半方酸菁和方酸菁染料的比较研究:通过取代来调节电荷转移/双自由基特性。

A comparative study of semi-squaraine and squaraine dyes using computational techniques: tuning the charge transfer/biradicaloid character by substitution.

机构信息

School of Chemical Sciences, SRTM University, Nanded, 431 606, India.

出版信息

J Mol Model. 2013 Jan;19(1):275-87. doi: 10.1007/s00894-012-1543-8. Epub 2012 Aug 10.

Abstract

Semi-squaraines (SMSQ) are known as donor-acceptor (D-A) type molecules whereas squaraines (SQ), which differs from SMSQ by an extra donor group, are more or less biradicaloids in nature. The effect of the additional donor group in SQ, which changes the nature of the molecule, on geometrical and electronic structure are studied here and compared with the corresponding SMSQ. It is noticed from the geometrical parameters that, a strong resonance exists in SQ whereas disparity in carbon-carbon bond lengths of central C4 ring is seen in SMSQ dyes. The increasing and decreasing of antibonding interactions between central C4 ring and side donor groups cause destabilization of HOMO and stabilization of LUMO respectively in case of SQ compared to SMSQ molecules. This leads to decreasing the HOMO-LUMO gap and promotes biradicaloid character of SQ. The absorption maxima obtained by using TD-DFT method with BLYP, B3LYP, BHandHLYP, CAM-B3LYP and M06-2X functionals are not in good agreement with experimental results. On the other hand SAC-CI method gives better results for all the molecules. From this work we can evolve a design principle of these molecules which play a role as sensitizers in dye sensitized solar cells.

摘要

半方酸菁(SMSQ)是一种供体-受体(D-A)型分子,而方酸菁(SQ)则通过额外的供体基团或多或少地呈现双自由基特性,与 SMSQ 不同。本研究探讨了 SQ 中额外供体基团对分子性质的影响及其对几何和电子结构的影响,并与相应的 SMSQ 进行了比较。从几何参数可以看出,在 SQ 中存在强烈的共振,而在 SMSQ 染料中则可以看到中心 C4 环的碳-碳键长度存在差异。与 SMSQ 分子相比,在 SQ 中,中心 C4 环与侧供体基团之间的反键相互作用的增加和减少分别导致 HOMO 的不稳定性和 LUMO 的稳定性增加,从而导致 HOMO-LUMO 能隙减小,并促进 SQ 的双自由基特性。使用 BLYP、B3LYP、BHandHLYP、CAM-B3LYP 和 M06-2X 泛函的 TD-DFT 方法得到的吸收最大值与实验结果不太一致。另一方面,SAC-CI 方法对所有分子都给出了更好的结果。从这项工作中,我们可以得出这些分子的设计原则,它们在染料敏化太阳能电池中作为敏化剂发挥作用。

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