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氯(二甲基亚砜)钌(II)与三(2-吡啶甲基)胺及其衍生物形成的配合物的合成、表征及其在烷烃氧化反应中的催化能力

Syntheses, characterization, and catalytic ability in alkane oxygenation of chloro(dimethyl sulfoxide)ruthenium(II) complexes with tris(2-pyridylmethyl)amine and its derivatives.

作者信息

Yamaguchi Motowo, Kousaka Hiroyuki, Izawa Shinichi, Ichii Yoshiki, Kumano Takashi, Masui Dai, Yamagishi Takamichi

机构信息

Department of Applied Chemistry, Graduate School of Engineering, Tokyo Metropolitan University, Minami-osawa, Hachioji, Tokyo 192-0397, Japan.

出版信息

Inorg Chem. 2006 Oct 2;45(20):8342-54. doi: 10.1021/ic060722c.

Abstract

New ruthenium(II) complexes having a tetradentate ligand such as tris(2-pyridylmethyl)amine (TPA), tris[2-(5-methoxycarbonyl)pyridylmethyl]amine [5-(MeOCO)3-TPA], tris(2-quinolylmethyl)amine (TQA), or bis(2-pyridylmethyl)glycinate (BPG) have been prepared. The reaction of the ligand with [RuCl2(Me2SO)4] resulted in a mixture of trans and cis isomers of the chloro(dimethyl sulfoxide-kappaS)ruthenium(II) complexes containing a TPA or a BPG, whereas a trans(Cl,N(amino)) isomer was selectively obtained for 5-(MeOCO)3-TPA and TQA. The trans and cis isomers of the [RuCl(TPA)(Me2SO)]+ complex were easily separated by fractional recrystallization. The molecular structures of trans- and cis(Cl,N(amino))-[RuCl(TPA)(Me2SO)]+ complexes and the trans(Cl,N(amino))-[RuCl{5-(MeOCO)3-TPA}(Me2SO)]+ complex have been determined by X-ray structural analyses. The reaction of TPA with [RuCl2(PhCN)4] gave a single isomer of the chloro(benzonitrile)ruthenium(II) complex, whereas the bis(benzonitrile)ruthenium(II) complex was obtained with BPG. The cis(Cl,N(amino))-[RuCl(TPA)(Me2SO)]+ complex is thermodynamically much less stable than the trans isomer and isomerizes in dimethyl sulfoxide at 65-100 degrees C. Oxygenation of alkanes catalyzed by these ruthenium(II) complexes has been examined. The chloro(dimethyl sulfoxide-kappaS)ruthenium(II) complexes with TPA and its derivatives using m-chloroperbenzoic acid as a cooxidant showed high catalytic ability. Adamantane was efficiently and selectively oxidized to give 1-adamantanol up to 88%. The chloro(dimethyl sulfoxide-kappaS)ruthenium(II) complex with 5-(MeOCO)3-TPA was found to be the most active catalyst among the complexes examined.

摘要

已制备出具有三齿配体的新型钌(II)配合物,如三(2-吡啶甲基)胺(TPA)、三[2-(5-甲氧基羰基)吡啶甲基]胺[5-(MeOCO)3-TPA]、三(2-喹啉甲基)胺(TQA)或双(2-吡啶甲基)甘氨酸酯(BPG)。配体与[RuCl2(Me2SO)4]反应生成含TPA或BPG的氯(二甲基亚砜-κS)钌(II)配合物的反式和顺式异构体混合物,而对于5-(MeOCO)3-TPA和TQA则选择性地得到反式(Cl,N(氨基))异构体。[RuCl(TPA)(Me2SO)]+配合物的反式和顺式异构体通过分步重结晶很容易分离。通过X射线结构分析确定了反式和顺式(Cl,N(氨基))-[RuCl(TPA)(MeSO)]+配合物以及反式(Cl,N(氨基))-[RuCl{5-(MeOCO)3-TPA}(Me2SO)]+配合物的分子结构。TPA与[RuCl2(PhCN)4]反应生成氯(苄腈)钌(II)配合物的单一异构体,而用BPG则得到双(苄腈)钌(II)配合物。顺式(Cl,N(氨基))-[RuCl(TPA)(Me2SO)]+配合物在热力学上比反式异构体稳定性差得多,在65-100℃的二甲基亚砜中会异构化。已研究了这些钌(II)配合物催化的烷烃氧化反应。以间氯过苯甲酸作为共氧化剂,含TPA及其衍生物的氯(二甲基亚砜-κS)钌(II)配合物显示出高催化活性。金刚烷被高效且选择性地氧化,得到1-金刚烷醇的产率高达88%。在所研究的配合物中,含5-(MeOCO)3-TPA的氯(二甲基亚砜-κS)钌(II)配合物被发现是最具活性的催化剂。

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