Nishikawa Michihiro, Sano Taichi, Washimi Masaya, Takao Koichiro, Tsubomura Taro
Department of Materials and Life Science, Seikei University, Kichijoji-kitamachi, Musashino, Tokyo 180-8633, Japan.
Research Laboratory for Nuclear Reactors, Tokyo Institute of Technology, 2-12-1 Ōokayama, Meguro-ku, Tokyo 152-8550, Japan.
Dalton Trans. 2016 Jul 26;45(30):12127-36. doi: 10.1039/c6dt01239f.
The synthesis, characterization, and emission properties of 2-coordinate dicopper(i) complexes bearing two trimethylene-bridged bis-NHC ligands, Cu2(L3Me)22 (1), Cu2(L3Et)22 (2), Cu2(L3Bu)22 (3), Cu2(L3MeOPh)22 (4) and Cu2(L3Mes)22 (5), where L3R denotes trimethylene-bridged bis(N-heterocyclic)carbene (NHC) ligand substituted by two R groups at the nitrogen atoms of NHC, have been investigated. The quantum yield, Φ, and the lifetime, τ, of the emission of 2, are 0.21 and 25 μs, respectively in methanol, which is a well-known solvent for quenching the luminescence of many copper(i) complexes. The 8-shaped geometry of the dicopper(i) complexes brings a considerable copper(i)-copper(i) interaction which affects the luminescent properties. Additionally, we find that methoxyphenyl and mesityl groups substituted at the nitrogen atom of the NHC moiety drastically stabilize the bis(NHC) copper(i) complexes even in air-saturated acetone-d6.
对带有两个三亚甲基桥连双-NHC配体的二配位二价铜(I)配合物Cu2(L3Me)22 (1)、Cu2(L3Et)22 (2)、Cu2(L3Bu)22 (3)、Cu2(L3MeOPh)22 (4) 和 Cu2(L3Mes)22 (5) 的合成、表征及发光性质进行了研究。其中L3R表示在NHC氮原子上被两个R基团取代的三亚甲基桥连双(N-杂环)卡宾(NHC)配体。配合物2在甲醇中的发光量子产率Φ和寿命τ分别为0.21和25 μs,甲醇是一种众所周知的能淬灭许多铜(I)配合物发光的溶剂。二价铜(I)配合物的8字形几何结构带来了相当大的铜(I)-铜(I)相互作用,这影响了发光性质。此外,我们发现,即使在空气饱和的丙酮-d6中,在NHC部分氮原子上取代的甲氧基苯基和均三甲苯基基团也能极大地稳定双(NHC)铜(I)配合物。