• Deutsch
  • Home
  • Search
  • Browse
  • Publish
  • Help
Schließen

Refine

Has Fulltext

  • yes (2)

Is part of the Bibliography

  • yes (2)

Year of publication

  • 2021 (1)
  • 2020 (1)

Document Type

  • Journal article (2)

Language

  • English (2)

Keywords

  • Lewis acidity (1)
  • Photoelektronenspektroskopie (1)
  • bismuth (1)
  • cationic species (1)
  • electrophilic substitution (1)
  • inorganic chemistry (1)
  • methyl exchange (1)
  • methylbismuth (1)

Author

  • Engels, Bernd (2)
  • Lichtenberg, Crispin (2)
  • Ramler, Jaqueline (2)
  • Braunschweig, Holger (1)
  • Fantuzzi, Felipe (1)
  • Fischer, Ingo (1)
  • Geist, Felix (1)
  • Hanft, Anna (1)
  • Hemberger, Patrick (1)
  • Kaiser, Dustin (1)
+ more

Institute

  • Institut für Anorganische Chemie (2)
  • Institut für Physikalische und Theoretische Chemie (2)

Sonstige beteiligte Institutionen

  • Paul Scherrer Institut (1)

2 search hits

  • 1 to 2
  • BibTeX
  • CSV
  • RIS
  • XML
  • 10
  • 20
  • 50
  • 100

Sort by

  • Year
  • Year
  • Title
  • Title
  • Author
  • Author
Methylbismuth: an organometallic bismuthinidene biradical (2020)
Mukhopadhyay, Deb Pratim ; Schleier, Domenik ; Wirsing, Sara ; Ramler, Jaqueline ; Kaiser, Dustin ; Reusch, Engelbert ; Hemberger, Patrick ; Preitschopf, Tobias ; Krummenacher, Ivo ; Engels, Bernd ; Fischer, Ingo ; Lichtenberg, Crispin
We report the generation, spectroscopic characterization, and computational analysis of the first free (non-stabilized) organometallic bismuthinidene, BiMe. The title compound was generated in situ from BiMe\(_3\) by controlled homolytic Bi–C bond cleavage in the gas phase. Its electronic structure was characterized by a combination of photoion mass-selected threshold photoelectron spectroscopy and DFT as well as multi-reference computations. A triplet ground state was identified and an ionization energy (IE) of 7.88 eV was experimentally determined. Methyl abstraction from BiMe\(_3\) to give [BiMe(_2\)]• is a key step in the generation of BiMe. We reaveal a bond dissociation energy of 210 ± 7 kJ mol\(^{−1}\), which is substantially higher than the previously accepted value. Nevertheless, the homolytic cleavage of Me–BiMe\(_2\) bonds could be achieved at moderate temperatures (60–120 °C) in the condensed phase, suggesting that [BiMe\(_2\)]• and BiMe are accessible as reactive intermediates under these conditions.
The dimethylbismuth cation: entry into dative Bi-Bi bonding and unconventional methyl exchange (2021)
Ramler, Jaqueline ; Fantuzzi, Felipe ; Geist, Felix ; Hanft, Anna ; Braunschweig, Holger ; Engels, Bernd ; Lichtenberg, Crispin
The dimethyl bismuth cation, [BiMe\(_2\)(SbF\(_6\))], has been isolated and characterized. Reaction with BiMe\(_3\) allows access to the first compound featuring Bi→Bi donor–acceptor bonding. In solution, dynamic behavior with methyl exchange via an unusual S\(_E\)2 mechanism is observed, underlining the unique properties of bismuth species as soft Lewis acids with the ability to undergo reversible Bi−C bond cleavage.
  • 1 to 2

DINI-Zertifikat     OPUS4 Logo

  • Contact
  • |
  • Imprint
  • |
  • Sitemap