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[3.3]并环桥联双金属钌炔基配合物的合成、结构及环间π-π相互作用对其电子性质的影响。

Dithia[3.3]paracyclophane-bridged bimetallic ruthenium acetylide complexes: synthesis, structures and influence of transannular π-π interactions on their electronic properties.

机构信息

Key Laboratory of Pesticide & Chemical Biology, Ministry of Education College of Chemistry, Central China Normal University, 152 Luoyu Road, Wuhan, Hubei 430079, China.

出版信息

Dalton Trans. 2013 Oct 21;42(39):14212-22. doi: 10.1039/c3dt51756j.

Abstract

Two dithia[3.3]paracyclophane-bridged bimetallic ruthenium acetylide complexes 2 and 3, in which the upper deck of the cyclophanes were assembled with naphthalenyl and anthracenyl rings, have been designed and synthesized. X-ray crystal structures of 2 and 3 show that there are effective transannular π–π interactions between the two rings in the cyclophane unit. Electrochemistry studies revealed that the successive introduction of naphthalenyl and anthracenyl rings reduced the thermodynamic stability of the corresponding mixed-valence states of 2 and 3. Radical cations and dications of complexes 2 and 3 were generated after the addition of 1.0 or 2.0 equivalents of ferrocenium hexafluorophosphate ([FcH][PF6]). The ν(C≡C) of radicals 2+ and 3+ shift 86 nm and 88 nm in contrast to 2 and 3, respectively. UV-Vis-NIR spectra of 2+ and 3+ exhibited three enveloped transitions in the NIR (10,000–4000 cm(−1)) range. DFT studies showed that the compositions of the FMOs of 2 and 3 are more naphthalenyl and anthracenyl in character than the upper deck of complex 1. Spectroscopy and DFT studies indicated that the influence of transannular π–π interactions on the electronic transitions is more pronounced than in complex 1.

摘要

两个二硫[3.3]并环戊二烯桥联双金属钌炔配合物 2 和 3 被设计并合成,其中环戊烷的上层甲板由萘基和蒽基环组装而成。2 和 3 的 X 射线晶体结构表明,环戊烷单元中环之间存在有效的反式环 π-π 相互作用。电化学研究表明,萘基和蒽基环的连续引入降低了 2 和 3 相应混合价态的热力学稳定性。在添加 1.0 或 2.0 当量的六氟磷酸铁([FcH][PF6])后,生成了配合物 2 和 3 的自由基阳离子和二阳离子。与 2 和 3 相比,自由基 2+和 3+的 ν(C≡C)分别红移 86nm 和 88nm。2+和 3+的 UV-Vis-NIR 光谱在近红外 (10,000-4000cm(-1)) 范围内显示出三个包络跃迁。DFT 研究表明,2 和 3 的 FMO 组成比配合物 1 的上层甲板更具萘基和蒽基特征。光谱和 DFT 研究表明,反式环 π-π 相互作用对电子跃迁的影响比配合物 1 更为显著。

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