New bonding modes of carbon and heavier group 14 atoms Si-Pb

作者:Frenking Gernot*; Tonner Ralf; Klein Susanne; Takagi Nozomi; Shimizu Takayazu; Krapp Andreas; Pandey Krishna K; Parameswaran Pattiyil
来源:Chemical Society Reviews, 2014, 43(14): 5106-5139.
DOI:10.1039/c4cs00073k

摘要

Recent theoretical studies are reviewed which show that the naked group 14 atoms E = C-Pb in the singlet 1D state behave as bidentate Lewis acids that strongly bind two sigma donor ligands L in the donor-acceptor complexes L -%26gt; E %26lt;- L. Tetrylones EL2 are divalent E(0) compounds which possess two lone pairs at E. The unique electronic structure of tetrylones (carbones, silylones, germylones, stannylones, plumbylones) clearly distinguishes them from tetrylenes ER2 (carbenes, silylenes, germylenes, stannylenes, plumbylenes) which have electron-sharing bonds R-E-R and only one lone pair at atom E. The different electronic structures of tetrylones and tetrylenes are revealed by charge-and energy decomposition analyses and they become obvious experimentally by a distinctively different chemical reactivity. The unusual structures and chemical behaviour of tetrylones EL2 can be understood in terms of the donor-acceptor interactions L -%26gt; E %26lt;- L. Tetrylones are potential donor ligands in main group compounds and transition metal complexes which are experimentally not yet known. The review also introduces theoretical studies of transition metal complexes [TM]-E which carry naked tetrele atoms E = C-Sn as ligands. The bonding analyses suggest that the group-14 atoms bind in the P-3 reference state to the transition metal in a combination of sigma and pi(parallel to) electron-sharing bonds TM-E and pi(perpendicular to) back-donation TM -%26gt; E. The unique bonding situation of the tetrele complexes [TM]-E makes them suitable ligands in adducts with Lewis acids. Theoretical studies of [TM]-E -%26gt; W(CO)(5) predict that such species may becomes synthesized.

  • 出版日期2014