Abe Tsukasa, Morimoto Yuma, Tano Tetsuro, Mieda Kaoru, Sugimoto Hideki, Fujieda Nobutaka, Ogura Takashi, Itoh Shinobu
Department of Material and Life Science, Division of Advanced Science and Biotechnology, Graduate School of Engineering, Osaka University , 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
Inorg Chem. 2014 Aug 18;53(16):8786-94. doi: 10.1021/ic501461n. Epub 2014 Aug 7.
Copper(I) complexes supported by a series of N3-tridentate ligands bearing a rigid cyclic diamine framework such as 1,5-diazacyclooctane (L8, eight-membered ring), 1,4-diazacycloheptane (L7, seven-membered ring), or 1,4-diazacyclohexane (L6, six-membered ring) with a common 2-(2-pyridyl)ethyl side arm were synthesized and their reactivity toward O2 were compared. The copper(I) complex of L8 preferentially provided a mononuclear copper(II) end-on superoxide complex S as reported previously [Itoh, S., et al. J. Am. Chem. Soc. 2009, 131, 2788-2789], whereas a copper(I) complex of L7 gave a bis(μ-oxido)dicopper(III) complex O at a low temperature (-85 °C) in acetone. On the other hand, no such active-oxygen complex was detected in the oxygenation reaction of the copper(I) complex of L6 under the same conditions. In addition, O2-reactivity of the copper(I) complex supported by an acyclic version of the tridentate ligand (LA, PyCH2CH2N(CH3)CH2CH2CH2N(CH3)2; Py = 2-pyridyl) was examined to obtain a mixture of a (μ-η(2):η(2)-peroxido)dicopper(II) complex (S)P and a bis(μ-oxido)dicopper(III) complex O. Careful inspection of the crystal structures of copper(I) and copper(II) complexes and the redox potentials of copper(I) complexes has revealed important geometric effects of the supporting ligands on controlling nuclearity of the generated copper active-oxygen complexes.
合成了一系列由带有刚性环状二胺骨架(如1,5-二氮杂环辛烷(L8,八元环)、1,4-二氮杂环庚烷(L7,七元环)或1,4-二氮杂环己烷(L6,六元环))且带有共同的2-(2-吡啶基)乙基侧链的N3-三齿配体所支撑的铜(I)配合物,并比较了它们与O2的反应活性。如之前所报道的 [伊藤,S. 等人,《美国化学会志》2009年,131卷,2788 - 2789页],L8的铜(I)配合物优先生成单核铜(II)端基超氧化物配合物S,而L7的铜(I)配合物在低温(-85 °C)下于丙酮中生成双(μ-氧代)二铜(III)配合物O。另一方面,在相同条件下,L6的铜(I)配合物的氧化反应中未检测到此类活性氧配合物。此外,还研究了由三齿配体的无环形式(LA,PyCH2CH2N(CH3)CH2CH2CH2N(CH3)2;Py = 2-吡啶基)所支撑的铜(I)配合物的O2反应活性,得到了(μ-η(2):η(2)-过氧)二铜(II)配合物(S)P和双(μ-氧代)二铜(III)配合物O的混合物。对铜(I)和铜(II)配合物的晶体结构以及铜(I)配合物的氧化还原电位的仔细研究揭示了支撑配体在控制所生成的铜活性氧配合物的核数方面的重要几何效应。