Institut für Angewandte Photophysik, Technische Universität Dresden, George-Bähr-Strasse 1, 01069 Dresden, Germany.
Chemistry. 2011 Mar 1;17(10):2939-47. doi: 10.1002/chem.201002941. Epub 2011 Feb 2.
A series of novel aza-diisoindolmethine dyes 9 with six different aryl and heteroaryl groups at the indole moiety have been synthesized by the addition of aryl Grignard compounds to phthalodinitrile and subsequent reaction with formamide. A plausible reaction mechanism, through a Leuckart-Wallach-type reduction has been confirmed by means of DFT calculations of the related transition and intermediate states. The corresponding boron difluoride complexes (10) of 9 were prepared in a subsequent reaction step and the spectroscopic and electrochemical properties of 9 and 10 have been investigated both experimentally and theoretically. The aza-diisoindolmethines 9 exhibit an absorption maximum in the range from 615 to 720 nm, whereas the complexes 10 show a bathochromically shifted absorption maximum between 681 and 793 nm. Measurements of 9 and 10 by cyclic voltammetry display fully reversible redox waves for the reduction and oxidation with higher potentials for 10. From the measured redox potentials, the HOMO and LUMO energy levels were calculated for 9 and 10. The frontier orbital energies, the energies of the absorption bands, as well as the orbitals involved in the absorption process were calculated with DFT and compared to the measured results of 9 and 10. The absorption maximum can be related to an intense HOMO-LUMO transition and the more-pronounced stabilization of the LUMO upon complexation is the origin of the bathochromic shift of the absorption. Additionally, single-crystal structures for two species, 10 d and 10 f, are reported.
一系列新型氮杂二茚甲亚胺染料 9 通过芳基格氏试剂与邻苯二甲腈加成,然后与甲酰胺反应,在吲哚部分带有六个不同的芳基和杂芳基。通过相关过渡态和中间态的 DFT 计算,证实了一种可能的反应机制,即通过 Leuckart-Wallach 型还原。随后的反应步骤中制备了相应的硼二氟配合物(10),并通过实验和理论研究了 9 和 10 的光谱和电化学性质。氮杂二茚甲亚胺 9 的吸收最大值在 615 至 720nm 范围内,而配合物 10 的吸收最大值在 681 至 793nm 之间发生红移。9 和 10 的循环伏安测量显示还原和氧化的完全可逆氧化还原波,对于 10,其氧化还原波具有更高的电势。根据测量的氧化还原电位,计算了 9 和 10 的 HOMO 和 LUMO 能级。用 DFT 计算了前线轨道能量、吸收带的能量以及吸收过程中涉及的轨道,并将其与 9 和 10 的测量结果进行了比较。吸收最大值可归因于强烈的 HOMO-LUMO 跃迁,并且配合物中 LUMO 的更明显稳定是吸收红移的原因。此外,还报道了两个物种 10d 和 10f 的单晶结构。