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配体对具有空间位阻的四齿三脚架配体的铜(I)与双(μ-氧代)二铜(III)配合物之间可逆转化的影响以及双(μ-氧代)二铜(III)配合物的单加氧酶活性

Ligand effect on reversible conversion between copper(I) and bis(mu-oxo)dicopper(III) complex with a sterically hindered tetradentate tripodal ligand and monooxygenase activity of bis(mu-oxo)dicopper(III) complex.

作者信息

Mizuno Masayasu, Hayashi Hideki, Fujinami Shuhei, Furutachi Hideki, Nagatomo Shigenori, Otake Shigenori, Uozumi Kounosuke, Suzuki Masatatsu, Kitagawa Teizo

机构信息

Department of Chemistry, Faculty of Science, Kanazawa University, Kakuma-machi, Kanazawa 920-1192, Japan.

出版信息

Inorg Chem. 2003 Dec 15;42(25):8534-44. doi: 10.1021/ic0345166.

Abstract

A new sterically hindered tetradentate tripodal ligand (Me2-etpy) and its labeled analogue having deuterated methylene groups (d4-Me2-etpy) were synthesized, where Me2-etpy is bis(6-methyl-2-pyridylmethyl)(2-pyridylethyl)amine. Copper(I) complexes [Cu(Me2-etpy or d4-Me2-etpy)]+ (1 and 1-d4, respectively) reacted with dioxygen at -80 degrees C in acetone to give bis(mu-oxo)dicopper(III) complexes Cu2(O)2(Me2-etpy or d4-Me2-etpy)2 (1-oxo and 1-d4-oxo, respectively), the latter of which was crystallographically characterized. Unlike a bis(mu-oxo)dicopper(III) complex with a closely related Me2-tpa ligand having a 2-pyridylmethyl pendant, 1-oxo possessing a 2-pyridylethyl pendant is not fully formed even under 1 atm of O2 at -80 degrees C and is very reactive toward the oxidation of the supporting ligand. Thermal decomposition of 1-oxo gave an N-dealkylated ligand in yield approximately 80% based on a dimer and a corresponding aldehyde. The deuterated ligand d4-Me2-etpy greatly stabilizes the bis(mu-oxo)dicopper(III) complex 1-d4-oxo, indicating that the rate determining step of the N-dealkylation is the C-H bond cleavage from the methylene group. The reversible conversion between 1-d4 and 1-d4-oxo in acetone is dependent on the temperature, and the thermodynamic parameters (DeltaH and DeltaS) of the equilibrium were determined to be -53 +/- 2 kJ mol(-1) and -187 +/- 10 J mol(-1) K(-1), respectively. The effect of the 2-pyridylethyl pendant in comparison with the 2-pyridylmethyl and 6-methyl-2-pyridylmethyl pendants on the physicochemical properties of the copper(I) and bis(mu-oxo)dicopper(III) species is discussed.

摘要

合成了一种新型的空间位阻四齿三脚架配体(Me2-etpy)及其具有氘代亚甲基的标记类似物(d4-Me2-etpy),其中Me2-etpy是双(6-甲基-2-吡啶基甲基)(2-吡啶基乙基)胺。铜(I)配合物[Cu(Me2-etpy或d4-Me2-etpy)]+(分别为1和1-d4)在-80℃的丙酮中与氧气反应,生成双(μ-氧代)二铜(III)配合物Cu2(O)2(Me2-etpy或d4-Me2-etpy)2(分别为1-氧代和1-d4-氧代),后者经晶体学表征。与具有2-吡啶基甲基侧链的密切相关的Me2-tpa配体的双(μ-氧代)二铜(III)配合物不同,具有2-吡啶基乙基侧链的1-氧代即使在-80℃、1个大气压的氧气下也不能完全形成,并且对支撑配体的氧化非常敏感。1-氧代的热分解以二聚体为基础,产率约80%得到N-脱烷基化配体和相应的醛。氘代配体d4-Me2-etpy极大地稳定了双(μ-氧代)二铜(III)配合物1-d4-氧代,表明N-脱烷基化的速率决定步骤是亚甲基的C-H键断裂。1-d4和1-d4-氧代在丙酮中的可逆转化取决于温度,平衡的热力学参数(ΔH和ΔS)分别测定为-53±2 kJ mol(-1)和-187±10 J mol(-1) K(-1)。讨论了2-吡啶基乙基侧链与2-吡啶基甲基和6-甲基-2-吡啶基甲基侧链相比对铜(I)和双(μ-氧代)二铜(III)物种物理化学性质的影响。

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