Literature DB >> 16562943

Sequential reaction intermediates in aliphatic C-H bond functionalization initiated by a bis(mu-oxo)dinickel(III) complex.

Jaeheung Cho1, Hideki Furutachi, Shuhei Fujinami, Takehiko Tosha, Hideki Ohtsu, Osamu Ikeda, Akane Suzuki, Masaharu Nomura, Tomoya Uruga, Hajime Tanida, Toshihide Kawai, Koji Tanaka, Teizo Kitagawa, Masatatsu Suzuki.   

Abstract

The reaction of [Ni2(OH)2(Me2-tpa)2]2+ (1) (Me2-tpa = bis(6-methyl-2-pyridylmethyl)(2-pyridylmethyl)amine) with H2O2 causes oxidation of a methylene group on the Me2-tpa ligand to give an N-dealkylated ligand and oxidation of a methyl group to afford a ligand-based carboxylate and an alkoxide as the final oxidation products. A series of sequential reaction intermediates produced in the oxidation pathways, a bis(mu-oxo)dinickel(III) ([Ni2(O)2(Me2-tpa)2]2+ (2)), a bis(mu-superoxo)dinickel(II) ([Ni2(O2)2(Me2-tpa)2]2+ (3)), a (mu-hydroxo)(mu-alkylperoxo)dinickel(II) ([Ni2(OH)(Me2-tpa)(Me-tpa-CH2OO)]2+ (4)), and a bis(mu-alkylperoxo)dinickel(II) ([Ni2(Me-tpa-CH2OO)2]2+ (5)), was isolated and characterized by various physicochemical measurements including X-ray crystallography, and their oxidation pathways were investigated. Reaction of 1 with H2O2 in methanol at -40 degrees C generates 2, which is extremely reactive with H2O2, producing 3. Complex 2 was isolated only from disproportionation of the superoxo ligands in 3 in the absence of H2O2 at -40 degrees C. Thermal decomposition of 2 under N2 generated an N-dealkylated ligand Me-dpa ((6-methyl-2-pyridylmethyl)(2-pyridylmethyl)amine) and a ligand-coupling dimer (Me-tpa-CH2)2. The formation of (Me-tpa-CH2)2 suggests that a ligand-based radical Me-tpa-CH2* is generated as a reaction intermediate, probably produced by H-atom abstraction by the oxo group. An isotope-labeling experiment revealed that intramolecular coupling occurs for the formation of the coupling dimer. The results indicate that the rebound of oxygen to Me-tpa-CH2* is slower than that observed for various high-valence bis(mu-oxo)dimetal complexes. In contrast, the decomposition of 2 and 3 in the presence of O2 gave carboxylate and alkoxide ligands, respectively (Me-tpa-COO- and Me-tpa-CH2O-), instead of (Me-tpa-CH2)2, indicating that the reaction of Me-tpa-CH2* with O2 is faster than the coupling of Me-tpa-CH2* to generate ligand-based peroxyl radical Me-tpa-CH2OO*. Although there is a possibility that the Me-tpa-CH2OO* species could undergo various reactions, one of the possible reactive intermediates, 4, was isolated from the decomposition of 3 under O2 at -20 degrees C. The alkylperoxo ligands in 4 and 5 can be converted to a ligand-based aldehyde by either homolysis or heterolysis of the O-O bond, and disproportionation of the aldehyde gives a carboxylate and an alkoxide via the Cannizzaro reaction.

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Year:  2006        PMID: 16562943     DOI: 10.1021/ic0514243

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  5 in total

1.  Geometric and electronic structure and reactivity of a mononuclear "side-on" nickel(III)-peroxo complex.

Authors:  Jaeheung Cho; Ritimukta Sarangi; Jamespandi Annaraj; Sung Yeon Kim; Minoru Kubo; Takashi Ogura; Edward I Solomon; Wonwoo Nam
Journal:  Nat Chem       Date:  2009-10       Impact factor: 24.427

2.  Mononuclear nickel(II)-superoxo and nickel(III)-peroxo complexes bearing a common macrocyclic TMC ligand.

Authors:  Jaeheung Cho; Hye Yeon Kang; Lei V Liu; Ritimukta Sarangi; Edward I Solomon; Wonwoo Nam
Journal:  Chem Sci       Date:  2013-04-01       Impact factor: 9.825

3.  [(6-Methyl-2-pyridylmeth-yl)(2-pyridylmeth-yl)amine][(2-pyridylmeth-yl)amine]copper(II) bis-(perchlorate).

Authors:  Ray J Butcher; Yohannes T Tesema; Teshome B Yisgedu; Yilma Gultneh
Journal:  Acta Crystallogr Sect E Struct Rep Online       Date:  2007-12-06

4.  Carbon-hydrogen bond activation, C-N bond coupling, and cycloaddition reactivity of a three-coordinate nickel complex featuring a terminal imido ligand.

Authors:  Daniel J Mindiola; Rory Waterman; Vlad M Iluc; Thomas R Cundari; Gregory L Hillhouse
Journal:  Inorg Chem       Date:  2014-12-01       Impact factor: 5.165

5.  Electronic structure and reactivity of nickel(i) pincer complexes: their aerobic transformation to peroxo species and site selective C-H oxygenation.

Authors:  Christoph A Rettenmeier; Hubert Wadepohl; Lutz H Gade
Journal:  Chem Sci       Date:  2016-02-11       Impact factor: 9.825

  5 in total

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