Otsuki Joe, Omokawa Nobuyuki, Yoshiba Kenji, Yoshikawa Isao, Akasaka Tetsuo, Suenobu Tomoyoshi, Takido Toshio, Araki Koji, Fukuzumi Shunichi
College of Science and Technology, Nihon University, 1-8-14 Kanda Surugadai, Chiyoda-ku, Tokyo 101-8308, Japan.
Inorg Chem. 2003 May 5;42(9):3057-66. doi: 10.1021/ic026040g.
Two new ditopic ligands, 5,5"-azobis(2,2'-bipyridine) (5,5"-azo) and 5,5"-azoxybis(2,2'-bipyridine) (5,5"-azoxy), were prepared by the reduction of nitro precursors. Mononuclear and dinuclear Ru(II) complexes having one of these bridging ligands and 2,2'-bipyridine terminal ligands were also prepared, and their properties were compared with previously reported Ru(II) complexes having 4,4"-azobis(2,2'-bipyridine) (4,4"-azo). The X-ray crystal structure showed that 5,5"-azo adopts the trans conformation and a planar rodlike shape. The X-ray crystal structure of (bpy)(2)Ru(5,5"-azo)Ru(bpy)(2)(4) (Ru(5,5"-azo)Ru) showed that the bridging ligand is in the trans conformation and nearly planar also in the complex and the metal-to-metal distance is 10.0 A. The azo or azoxy ligand in these complexes exhibits reduction processes at less negative potentials than the terminal bpy's due to the low-lying pi level. The electronic absorption spectra for the complexes having 5,5"-azo or 5,5"-azoxy exhibit an extended low-energy metal-to-ligand charge-transfer absorption. The ligands, 5,5"-azo and 5,5"-azoxy, and the mononuclear complex, (bpy)(2)Ru(5,5"-azo), isomerize reversibly upon light irradiation. The low-energy MLCT state sensitizes the isomerization of the azo moiety in this complex. While (bpy)(2)Ru(4,4"-azo)Ru(bpy)(2)(4) exhibits light switch properties, namely, significant electrochromism and a large luminescence enhancement, upon reduction, Ru(5,5"-azo)Ru does not show these properties. The radical anion formation upon reduction of these complexes has been confirmed by ESR spectroscopy.
通过硝基前体的还原反应制备了两种新型双齿配体,5,5"-偶氮双(2,2'-联吡啶)(5,5"-偶氮)和5,5"-氧化偶氮双(2,2'-联吡啶)(5,5"-氧化偶氮)。还制备了具有这些桥联配体之一和2,2'-联吡啶端基配体的单核和双核Ru(II)配合物,并将它们的性质与先前报道的具有4,4"-偶氮双(2,2'-联吡啶)(4,4"-偶氮)的Ru(II)配合物进行了比较。X射线晶体结构表明,5,5"-偶氮采取反式构象且呈平面棒状。(bpy)(2)Ru(5,5"-偶氮)Ru(bpy)(2)(4)(Ru(5,5"-偶氮)Ru)的X射线晶体结构表明,桥联配体在配合物中也呈反式构象且近乎平面,金属-金属距离为10.0 Å。由于π能级较低,这些配合物中的偶氮或氧化偶氮配体在比端基联吡啶更负的电位下表现出还原过程。具有5,5"-偶氮或5,5"-氧化偶氮的配合物的电子吸收光谱表现出扩展的低能量金属-配体电荷转移吸收。配体5,5"-偶氮和5,5"-氧化偶氮以及单核配合物(bpy)(2)Ru(5,5"-偶氮)在光照下可逆异构化。低能量的MLCT态使该配合物中偶氮部分的异构化敏感化。虽然(bpy)(2)Ru(4,4"-偶氮)Ru(bpy)(2)(4)在还原时表现出光开关性质,即显著的电致变色和大的发光增强,但Ru(5,5"-偶氮)Ru不显示这些性质。通过ESR光谱证实了这些配合物还原时自由基阴离子的形成。