ARE STRONG GOLD GOLD INTERACTIONS POSSIBLE IN MAIN-GROUP X(N)A(AUPR3)M MOLECULES

Citation
Jk. Burdett et al., ARE STRONG GOLD GOLD INTERACTIONS POSSIBLE IN MAIN-GROUP X(N)A(AUPR3)M MOLECULES, Inorganic chemistry, 33(15), 1994, pp. 3261-3268
Citations number
58
Categorie Soggetti
Chemistry Inorganic & Nuclear
Journal title
ISSN journal
00201669
Volume
33
Issue
15
Year of publication
1994
Pages
3261 - 3268
Database
ISI
SICI code
0020-1669(1994)33:15<3261:ASGGIP>2.0.ZU;2-0
Abstract
The isolobal analogy between a proton and gold phosphine unit (AuPR3) and the existence of molecules such as CH5+, suggests the possibility of stabilization of Au-Au linkages by coordination to a main group fra gment. Calculations of the extended Huckel type on AX(n)(AuPR3)m molec ules show that since the energies of the orbitals associated with Au-A u bonding in the neutral (AuPR3)m fragments lie above empty levels of the neutral AX(n) fragments to which they are coordinated, there is in variably formal electron transfer between the two on coordination. The result is a large diminution of Au-Au bonding. This electronic situat ion for the main group case is quite different to that for transition metal ML(n)(AuPR3)m molecules which such formal charge transfer does n ot occur and stronger AuAu interactions are possible. Really strong Au -Au interactions are found only to occur in systems isoelectronic with H(n)(n-2)+ such as in the known molecule (AuPR3)4I2, and may be expec ted in the as yet unknown species (AuPR3)3I. The case of As(AuPR3)4+ i s a particularly interesting one. Here the C4v geometry is one where c lose Au-Au contacts are possible. It is suggested however that such en hanced Au-Au interactions are only one of the reasons behind the adopt ion of this geometry. Comparisons are made with the nontetrahedral geo metry of SiLi4.