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On the Stereochemistry of the NH Bond Activation of Ammonia or Amines by Disilenes: Predictability.
Sharif, Zahra Mohamad; Özpinar, Gül Altinbas; McOnie, Sarah L; Boyle, Paul D; Müller, Thomas; Baines, Kim M.
Afiliação
  • Sharif ZM; Department of Chemistry, University of Western Ontario (Western University), London, Ontario, N6A 5B7, Canada.
  • Özpinar GA; Institut für Chemie, Carl von Ossietzky Universität Oldenburg, 26129, Oldenburg, Germany.
  • McOnie SL; Department of Chemistry, University of Western Ontario (Western University), London, Ontario, N6A 5B7, Canada.
  • Boyle PD; Department of Chemistry, University of Western Ontario (Western University), London, Ontario, N6A 5B7, Canada.
  • Müller T; Institut für Chemie, Carl von Ossietzky Universität Oldenburg, 26129, Oldenburg, Germany.
  • Baines KM; Department of Chemistry, University of Western Ontario (Western University), London, Ontario, N6A 5B7, Canada.
Chemistry ; 29(39): e202301003, 2023 Jul 11.
Article em En | MEDLINE | ID: mdl-37078980
ABSTRACT
The stereochemistry of the addition of NH3 to the stereoisomers of 1,2-di-tert-butyl-1,2-bis(2,4,6-triisopropylphenyl)disilene (Z-5 or E-5) is 100 % stereospecific giving two isomeric disilylamines 6 and 7, respectively, derived from syn-addition to the stereoisomeric disilenes. Variable time normalization analysis studies of the reaction of tetramesityldisilene (3) with isopropylamine (i PrNH2 ) revealed that the order in both amine and disilene is 1. The kinetic isotope effect for the addition of i PrNH2 /i PrND2 to tetramesityldisilene was determined to be 3.04±0.06 at 298 K, a primary KIE, indicating that the proton is transferred in the rate determining step. Competition studies between the addition of PrNH2 and i PrNH2 to tetramesityldisilene resulted in the exclusive formation of the PrNH2 adduct consistent with a nucleophilic addition. Computational studies of the mechanism of the addition of ammonia to E-5 revealed the lowest energy pathway involves the formation of the donor adduct derived from syn-addition, followed by intramolecular syn-transfer of the proton. The formation of the donor adduct is the rate determining step. The results of this study, together with previous studies on the addition of ammonia and amines to disilenes, allow for a refinement of our understanding of the mechanism of this important fundamental reaction in disilene chemistry, and allow us to understand our ability to reliably predict the stereochemical outcomes of future NH σ-bond activation reactions.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Canadá

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Canadá