Syntheses and Structures of Magnesium and Zinc Boraamidinates: EPR and DFT Investigations of Li, Mg, Zn, B, and In Complexes of the [PhB(NtBu)2]•- Anion Radical
- 8 February 2006
- journal article
- research article
- Published by American Chemical Society (ACS) in Inorganic Chemistry
- Vol. 45 (5), 2119-2131
- https://doi.org/10.1021/ic0520014
Abstract
The first magnesium and zinc boraamidinate (bam) complexes have been synthesized via metathetical reactions between dilithio bams and Grignard reagents or MCl2 (M = Mg, Zn). The following new classes of bam complexes have been structurally characterized: heterobimetallic spirocycles {(L)mu-Li[PhB(mu-NtBu)2]}2M (6a,b, M = Mg, L = Et2O, THF; 6c, M = Zn, L = Et(2)O); bis(organomagnesium) complexes {[PhB(mu3-NtBu)2](MgtBu)2(mu3-Cl)Li(OEt2)3} (8) and {[PhB(mu3-NtBu)2](MgR)2(THF)2} (9a, R = iPr; 9b, R = Ph); mononuclear complex {[PhB(mu-NDipp)2]Mg(OEt2)2} (10). Oxidation of 6a or 6c with iodine produces persistent pink (16a, M = Mg) or purple (16b, M = Zn) neutral radicals {Lx-mu-Li[PhB(mu-NtBu)2]2M}. (L = solvent molecule), which are shown by EPR spectra supported by DFT calculations to be Cs-symmetric species with spin density localized on one of the bam ligands. In contrast, characterization of the intensely colored neutral radicals {[PhB(mu-NtBu)2]2M}. (5c, M = In, dark green; 5d, M = B, dark purple) reveals that the spin density is equally delocalized over all four nitrogen atoms in these D2d-symmetric spirocyclic systems. Oxidation of the dimeric dilithio complex {Li2[PhB(mu4-NtBu)2]}2 with iodine produces the monomeric neutral radical {[PhB(mu-NtBu)2]Li(OEt2)x}. (17), characterized by EPR spectra and DFT calculations. These findings establish that the bam anionic radical [PhB(NtBu)2].- can be stabilized by coordination to a variety of early main-group metal centers to give neutral radicals whose relative stabilities are compared and discussed.Keywords
This publication has 41 references indexed in Scilit:
- Eclipsed M2X6 Compounds Exhibiting Very Short Metal−Metal Triple BondsInorganic Chemistry, 2004
- Synthetic and Structural Investigations of Monomeric Dilithium Boraamidinates and Bidentate NBNCN Ligands with Bulky N-Bonded GroupsInorganic Chemistry, 2004
- Syntheses and X-ray Structures of Monocyclic, Bicyclic, and Spirocyclic Gallium and Indium BoraamidinatesInorganic Chemistry, 2003
- Syntheses and X-ray structures of boraamidinate complexes of lithium, phosphorus, and telluriumCanadian Journal of Chemistry, 2002
- Vier- und achtgliedrige metallhaltige Bor-Stickstoff-Heterocyclen. Bildung und Strukturen in Abhängigkeit von der Raumerfüllung der SubstituentenZeitschrift für anorganische und allgemeine Chemie, 1998
- Die 2,6‐Diisopropyl‐phenylgruppe als sperriger Substituent in Bor‐Stickstoff‐Verbindungen. II [1]Zeitschrift für anorganische und allgemeine Chemie, 1995
- Metalla‐ und Phosphaheterocyclen mit Diamino‐Supermesitylboryl‐EinheitenZeitschrift für anorganische und allgemeine Chemie, 1994
- Addition von Silylenen an IminoboraneEuropean Journal of Inorganic Chemistry, 1992
- N,N′‐Dilithiobis(alkylamino)phenylborane als Synthesebausteine für viergliedrige MetallacyclenEuropean Journal of Inorganic Chemistry, 1990
- Synthesis and X-ray crystal structure of a tricyclic lead–nitrogen–boron heterocycleJournal of the Chemical Society, Chemical Communications, 1990