4.8 Article

Selective para-Halogenation and Dimerization of N,C,N′-Arylruthenium(II) and -(III) 2,2:6′,2-Terpyridine Cations

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 132, Issue 6, Pages 1914-1924

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ja9073276

Keywords

-

Funding

  1. European Commission [SES6-CT-2003-502620]
  2. Council for Chemical Sciences of The Netherlands Organization for Scientific Research (NWO/CW) [SG-032]
  3. Stichting voor Fundamenteel Onderzock der Materie (FOM)

Ask authors/readers for more resources

The N,C,/N'-bonded arylruthenium 2,2'6',2 ''-terpyndine (tpy) complex salts [Ru(NCN)(tpy)](Cl) ([1a](Cl), NCN = 2,6-bis[(dimethylamino)methyl]phenyl) and [Ru((NCN)-C-boolean AND-N-boolean AND)(tpy)](PF6), ([2a](PF6), (NCN)-C-boolean AND-N-boolean AND = 2,6-bis(2-pyndyl)phenyl) can be halogenated under very mild conditions by oxidation with copper(I I) halogen salts. Halogenation occurs exclusively para to the site of metalation and yields the cations [Ru(4-R-NCN)(tpy)](+) (R = Cl, [1b](+) and R = Br [1c](+)) and [Ru(4-R-(NCN)-C-boolean AND-N-boolean AND)(tpy)](+) (R = Cl, [2b](+) and R = Br [2c](+)). In the presence of an excess of oxidant relative to [1a]+, the halogenation reaction follows first order kinetics in the oxidized ruthenium complex. However, by using a small excess of copper(II) compared to [1a](divided by), dimerization of the complex cation to [{Ru(tpy)}(2)(mu-NCN-NCN)](4+) ([3](4+)) is observed, which obeys second order kinetics Both halogenation (C-X coupling) and dimerization (C-C coupling) are a result of the unique properties of the ruthenium(III) complexes compared to their parent ruthenium(II) species According to the nature of the highest occupied spin orbital (HOSO) in DFT calculations the unpaired electron in [1a](2+) and [2a](2+) is partially localized on the para position The involvement of the cyclometalated ligand in the HOSO is supported by redox data and electronic absorption spectroscopy The ruthenium(III) species can best be considered a persistent organometallic radical.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.8
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available