NATURE OF BONDING IN CYCLIC CONJUGATED YLIDES

Citation
L. Nyulaszi et T. Veszpremi, NATURE OF BONDING IN CYCLIC CONJUGATED YLIDES, Journal of physical chemistry, 100(16), 1996, pp. 6456-6462
Citations number
54
Categorie Soggetti
Chemistry Physical
ISSN journal
00223654
Volume
100
Issue
16
Year of publication
1996
Pages
6456 - 6462
Database
ISI
SICI code
0022-3654(1996)100:16<6456:NOBICC>2.0.ZU;2-#
Abstract
The conjugative ability of the lambda(5)-P=C bond has been compared to its lambda(3)-P=C counterpart at the MP2/6-31G//MP2/6-31G* level of theory, using isodesmic reaction energies. Investigating heterobutadie nes, it has been observed that compounds containing a lambda(3)-P=C bo nd show similar delocalization energy as those with C=C units. As for lambda(5)-phosphabutadienes, however, stabilization is achieved only i n the case of C substitution. This behavior has been rationalized by p erturbation theory arguments with the conclusion that while for the la mbda(3)-P=C and C=C bonds a two-way interaction, for the lambda(5)-P=C system a one-way interaction is operational, Comparing cyclic systems containing lambda(3)- and lambda(5)-P=C bonds, similar structures (bo nd lengths) and stabilizations (as concluded from bond separation and homodesmic reaction energies) were obtained for six-membered rings inc luding benzene and other rings containing one and three (symmetrically arranged) phosphorus atoms. The four-membered rings (1 lambda(3),3 la mbda(3)- and 1 lambda(5),3 lambda(5)-diphosphacyclobutadienes), howeve r, show completely different behavior, since the lambda(5)-P derivativ e does not show destabilization upon ring formation and has equal bond lengths, while lambda(3)-P rings are clearly antiaromatic. Rationaliz ation has been given in terms of the differences in the one-way and tw o-way conjugative interactions.