Energy partitioning analysis of the bonding in ethylene and acetylene complexes of group 6, 8, and 11 metals:: (CO)5TM-C2Hx and Cl4TM-C2Hx (TM = Cr, Mo, W), (CO)4TM-C2Hx (TM = Fe, Ru, Os), and TM+-C2Hx (TM = Cu, Ag, Au)

被引:144
作者
Nechaev, MS
Rayón, VM
Frenking, G
机构
[1] Univ Marburg, Fachbereich Chem, D-35043 Marburg, Germany
[2] Moscow MV Lomonosov State Univ, Dept Chem, Moscow 119899, Russia
关键词
D O I
10.1021/jp031185+
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Quantum chemical calculations at the DFT level have been carried out for the title compounds. The equilibrium geometries and bond dissociation energies are reported. The nature of the bonding between the metal and the pi ligands ethylene and acetylene has been investigated by means of an energy partitioning analysis. The nature of the metal-ligand interactions is not very different from each other in the donor-acceptor complexes (CO)(5)TM-C2Hx (TM = Cr, Mo, W), (CO)(4)TM-C2Hx (TM = Fe, Ru, Os), and TM+-C2Hx (TM = Cu, Ag, An). The metal-C2Hx bonds have a slightly more electrostatic than covalent character. The covalent bonding comes mainly from the metal <-- ligand sigma donation and the metal --> ligand pi(ll) in-plane back-donation. The contributions from the out-of-plane pi(perpendicular to) and delta orbitals are negligible. The main difference of the bonding interactions in the metallacyclic compounds Cl4TM-C2Hx (TM = Cr, Mo, W) is that they are clearly more covalent than electrostatic. The covalent interactions come also mainly from a(1)(sigma) and b(2)(pi(ll)) interactions. The a(2)(delta) orbital interactions are negligible but the interactions of the out-of-plane pi orbitals in the acetylene complexes Cl4TM-C2H2 contribute similar to11% to the total orbital term.
引用
收藏
页码:3134 / 3142
页数:9
相关论文
共 53 条
[1]   STRUCTURE, CONFORMATION, AND LIGAND-BINDING IN FE(CO)4(C2H4) AND SOME DERIVATIVES - A THEORETICAL-STUDY [J].
AXE, FU ;
MARYNICK, DS .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1984, 106 (21) :6230-6235
[2]   Self-consistent molecular Hartree-Fock-Slater calculations - I. The computational procedure [J].
Baerends, E. J. ;
Ellis, D. E. ;
Ros, P. .
CHEMICAL PHYSICS, 1973, 2 (01) :41-51
[3]   DENSITY-FUNCTIONAL EXCHANGE-ENERGY APPROXIMATION WITH CORRECT ASYMPTOTIC-BEHAVIOR [J].
BECKE, AD .
PHYSICAL REVIEW A, 1988, 38 (06) :3098-3100
[4]   STRUCTURE OF OS(CO)4(C2H4), AN OSMACYCLOPROPANE [J].
BENDER, BR ;
NORTON, JR ;
MILLER, MM ;
ANDERSON, OP ;
RAPPE, AK .
ORGANOMETALLICS, 1992, 11 (10) :3427-3434
[5]   Ab initio study of structures, energetics, and bonding in formally high-oxidation-state copper organometallics [J].
Bera, JK ;
Samuelson, AG ;
Chandrasekhar, J .
ORGANOMETALLICS, 1998, 17 (19) :4136-4145
[6]   Kohn-Sham density functional theory: Predicting and understanding chemistry [J].
Bickelhaupt, FM ;
Baerends, EJ .
REVIEWS IN COMPUTATIONAL CHEMISTRY, VOL 15, 2000, 15 :1-86
[7]   Theoretical studies of organometallic compounds .21. Copper-substituted ethanes as a model for copper-acetylene interactions on the metal surface - Quantum mechanical study of the structure and bonding of copper-acetylene and copper-ethylene compounds Cu-n(C2H2) (n=1, 2, 4), Cu(C2H2)(+), Cu-n(C2H4) (n=1, 2) and Cu(C2H4)(+) [J].
Bohme, M ;
Wagener, T ;
Frenking, G .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 1996, 520 (1-2) :31-43
[8]   Reactions between small organic molecules and Ag+ in the gas-phase.: A theoretical study [J].
Boutreau, L ;
Leon, E ;
Luna, A ;
Toulhoat, P ;
Tortajada, J .
CHEMICAL PHYSICS LETTERS, 2001, 338 (01) :74-82
[9]   Experimental determination of the Cr-C2Cl4 bond dissociation enthalpy in Cr(CO)5(C2Cl4):: Quantifying metal-olefin bonding interactions [J].
Cedeño, DL ;
Weitz, E .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2001, 123 (51) :12857-12865
[10]   REGULAR 2-COMPONENT PAULI-LIKE EFFECTIVE-HAMILTONIANS IN DIRAC THEORY [J].
CHANG, C ;
PELISSIER, M ;
DURAND, P .
PHYSICA SCRIPTA, 1986, 34 (05) :394-404