Isolable Silyl and Germyl Radicals Lacking Conjugation with π-Bonds:  Synthesis, Characterization, and Reactivity

The one-electron oxidation reaction of tris[di-tert-butyl(methyl)silyl]silyl and -germyl anions with dichlorogermylene−dioxane complex results in the formation of stable tris[di-tert-butyl(methyl)silyl]silyl and -germyl radicals 1 and 2, representing the first isolable radical species of heavier Gro...

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Published inJournal of the American Chemical Society Vol. 124; no. 33; pp. 9865 - 9869
Main Authors Sekiguchi, Akira, Fukawa, Tomohide, Nakamoto, Masaaki, Lee, Vladimir Ya, Ichinohe, Masaaki
Format Journal Article
LanguageEnglish
Published WASHINGTON American Chemical Society 21.08.2002
Amer Chemical Soc
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Abstract The one-electron oxidation reaction of tris[di-tert-butyl(methyl)silyl]silyl and -germyl anions with dichlorogermylene−dioxane complex results in the formation of stable tris[di-tert-butyl(methyl)silyl]silyl and -germyl radicals 1 and 2, representing the first isolable radical species of heavier Group 14 elements lacking stabilization by conjugation with π-bonds. The crystal structures of both silyl and germyl radicals 1 and 2 showed a completely planar geometry around the radical centers. The ESR spectra of 1 and 2 showed strong signals with characteristic satellites due to the coupling with the 29Si and 73Ge nuclei. The small values of the hyperfine coupling constants a(29Si) and a(73Ge) clearly indicate the π-character of both radicals, corresponding to a planar geometry and sp2 hybridization of the radical centers. Both 1 and 2 easily undergo halogenation reactions with carbon tetrachloride, 1,2-dibromoethane, and benzyl bromide to form the corresponding halosilanes and halogermanes.
AbstractList The one-electron oxidation reaction of tris[di-tert-butyl(methyl)silyl]silyl and -germyl anions with dichlorogermylene−dioxane complex results in the formation of stable tris[di-tert-butyl(methyl)silyl]silyl and -germyl radicals 1 and 2, representing the first isolable radical species of heavier Group 14 elements lacking stabilization by conjugation with π-bonds. The crystal structures of both silyl and germyl radicals 1 and 2 showed a completely planar geometry around the radical centers. The ESR spectra of 1 and 2 showed strong signals with characteristic satellites due to the coupling with the 29Si and 73Ge nuclei. The small values of the hyperfine coupling constants a(29Si) and a(73Ge) clearly indicate the π-character of both radicals, corresponding to a planar geometry and sp2 hybridization of the radical centers. Both 1 and 2 easily undergo halogenation reactions with carbon tetrachloride, 1,2-dibromoethane, and benzyl bromide to form the corresponding halosilanes and halogermanes.
The one-electron oxidation reaction of tris[di-tert-butyl(methyl)silyl]silyl and -germyl anions with dichlorogermylene-dioxane complex results in the formation of stable tris[di-tert-butyl(methyl)silyl]silyl and -germyl radicals 1 and 2, representing the first isolable radical species of heavier Group 14 elements lacking stabilization by conjugation with A-bonds. The crystal structures of both silyl and germyl radicals 1 and 2 showed a completely planar geometry around the radical centers. The ESR spectra of 1 and 2 showed strong signals with characteristic satellites due to the coupling with the Si-29 and Ge-73 nuclei. The small values of the hyperfine coupling constants a(Si-29) and a(Ge-73) clearly indicate the A-character of both radicals, corresponding to a planar geometry and sp(2) hybridization of the radical centers. Both 1 and 2 easily undergo halogenation reactions with carbon tetrachloride, 1,2-dibromoethane, and benzyl bromide to form the corresponding halosilanes and halogermanes.
The one-electron oxidation reaction of tris[di-tert-butyl(methyl)silyl]silyl and -germyl anions with dichlorogermylene-dioxane complex results in the formation of stable tris[di-tert-butyl(methyl)silyl]silyl and -germyl radicals 1 and 2, representing the first isolable radical species of heavier Group 14 elements lacking stabilization by conjugation with pi-bonds. The crystal structures of both silyl and germyl radicals 1 and 2 showed a completely planar geometry around the radical centers. The ESR spectra of 1 and 2 showed strong signals with characteristic satellites due to the coupling with the 29Si and 73Ge nuclei. The small values of the hyperfine coupling constants a(29Si) and a(73Ge) clearly indicate the pi-character of both radicals, corresponding to a planar geometry and sp2 hybridization of the radical centers. Both 1 and 2 easily undergo halogenation reactions with carbon tetrachloride, 1,2-dibromoethane, and benzyl bromide to form the corresponding halosilanes and halogermanes.
Author Sekiguchi, Akira
Ichinohe, Masaaki
Lee, Vladimir Ya
Nakamoto, Masaaki
Fukawa, Tomohide
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  surname: Ichinohe
  fullname: Ichinohe, Masaaki
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Issue 33
Keywords ELECTRON-SPIN-RESONANCE
PERSISTENT RADICALS
EPR
SILICON
Germanium Organic compounds
Molecular structure
Organic free radical
Silicon Organic compounds
EPR spectrometry
Experimental study
Chemical reactivity
X ray diffraction
Crystalline structure
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Snippet The one-electron oxidation reaction of tris[di-tert-butyl(methyl)silyl]silyl and -germyl anions with dichlorogermylene−dioxane complex results in the formation...
The one-electron oxidation reaction of tris[di-tert-butyl(methyl)silyl]silyl and -germyl anions with dichlorogermylene-dioxane complex results in the formation...
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SubjectTerms Chemistry
Chemistry, Multidisciplinary
Condensed matter: structure, mechanical and thermal properties
Exact sciences and technology
Free radicals chemistry
Organic chemistry
Organic compounds
Organometalloidal and organometallic compounds
Physical Sciences
Physics
Reactivity and mechanisms
Science & Technology
Structure of solids and liquids; crystallography
Structure of specific crystalline solids
Title Isolable Silyl and Germyl Radicals Lacking Conjugation with π-Bonds:  Synthesis, Characterization, and Reactivity
URI http://dx.doi.org/10.1021/ja0126780
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