Skip to content Skip to navigation
University of Warwick
  • Study
  • |
  • Research
  • |
  • Business
  • |
  • Alumni
  • |
  • News
  • |
  • About

University of Warwick
Publications service & WRAP

Highlight your research

  • WRAP
    • Home
    • Search WRAP
    • Browse by Warwick Author
    • Browse WRAP by Year
    • Browse WRAP by Subject
    • Browse WRAP by Department
    • Browse WRAP by Funder
    • Browse Theses by Department
  • Publications Service
    • Home
    • Search Publications Service
    • Browse by Warwick Author
    • Browse Publications service by Year
    • Browse Publications service by Subject
    • Browse Publications service by Department
    • Browse Publications service by Funder
  • Statistics
  • Help & Advice
University of Warwick

The Library

  • Login

Silver-phosphine complexes of the highly methylated carborane monoanion [closo-1-H-CB11M11](-)

Tools
- Tools
+ Tools

UNSPECIFIED. (2004) Silver-phosphine complexes of the highly methylated carborane monoanion [closo-1-H-CB11M11](-). JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 126 (5). pp. 1503-1517. ISSN 0002-7863

Full text not available from this repository.
Official URL: http://dx.doi.org/10.1021/ja038173m

Abstract

The synthesis of the silver(l) salt of the highly methylated carborane anion [closo-1-H-CB11-Me-11](-) is described, Ag[closo-1-H-CB11Me11] 1, which in the solid state shows close intermolecular Ag...H3C contacts. Addition of various monodentate phosphines to 1 results in the formation of the complexes (R3P)-Ag[closo-1-H-CB11Me11] [R = Ph, 2; cyclohexyl (C6H11), 3; (3,5-Me-2-C6H3), 4]. All these complexes show close intermolecular Ag...H3C contacts in the solid state that are considerably shorter than the sum of the van der Waals radius of methyl (2.00 Angstrom) and the ionic radius of silver(l) (1.29 Angstrom). For 2 and 3 there are other close intermolecular Ag...H3C contacts in the solid state, arising from proximate carborane anions in the crystal lattice. Addition of methyl groups to the periphery of the phosphine ligand (complex 4) switches off the majority of these interactions, leaving essentially a single cage interacting with the cationic silver-phosphine fragment through three CH3 groups. In solution (CD2Cl2) Ag...H3C contacts remain, as evidenced by both the downfield chemical shift change and the significant line-broadening observed for the cage methyl signals. These studies also show that the metal fragment is fluxional over the surface of the cage. The Ag...H3C interactions in solution may be switched off by addition of a stronger Lewis base than [closo-1-H-CB11Me11](-). Thus, addition of [NBu4][closo-1-H-CB11H5Br6] to 2 affords (Ph3P)Ag[closo-1-H-CB11H5Br6], while adding Et2O or PPh3 affords the well-separated ion-pairs [(Ph3P)(L)Ag][closo-1-H-CB11Me11] (L = OEt2 5, PPh3 6,) both of which have been crystallographically characterized. DFT calculations on 2 (at the B3LYP/DZVP level) show small energy differences between the possible coordination isomers of this compound, with the favored geometry being one in which the {(Ph3P)Ag}(+) fragment interacts with three of the {BCH3} vertices on the lower surface of the cage, similar to the experimentally observed structure of4.

Item Type: Journal Article
Subjects: Q Science > QD Chemistry
Journal or Publication Title: JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Publisher: AMER CHEMICAL SOC
ISSN: 0002-7863
Date: 11 February 2004
Volume: 126
Number: 5
Number of Pages: 15
Page Range: pp. 1503-1517
Identification Number: 10.1021/ja038173m
Publication Status: Published
URI: http://wrap.warwick.ac.uk/id/eprint/8790

Data sourced from Thomson Reuters' Web of Knowledge

Request changes to a record

Actions (login required)

View Item View Item
twitter

Email us: publications@warwick.ac.uk
Contact Details
About Us