Heterometallic early-late pi-tweezer complexes: their synthesis, electrochemical behaviour and the solid-state structures of (eta(5)-C5H4SiMe3)(2)Ti(C CPh)(2) and [(eta(5)-C5H4SiMe3)(2)Ti(C CPh)(2)]Pd(PPh3)
S. Back et al., Heterometallic early-late pi-tweezer complexes: their synthesis, electrochemical behaviour and the solid-state structures of (eta(5)-C5H4SiMe3)(2)Ti(C CPh)(2) and [(eta(5)-C5H4SiMe3)(2)Ti(C CPh)(2)]Pd(PPh3), INORG CHIM, 325(1-2), 2001, pp. 94-102
The reaction of [Ti](C equivalent to CPh)(2) (1) {[Ti] = (eta (5)-C5H4SiMe3
)(2)Ti} with equimolar amounts of CuBr, Ni(PPh3)(3) or Pd(PPh3)(4) produces
the heterobimetallic early-late transition metal complexes of general type
{[Ti](C equivalent to CPh)(2)} MX [2: MX=CuBr, 3: MX = Ni(PPh3), 4: MX = P
d(PPh3) in which the respective transition metal atoms are linked by aar-bo
und alkynyl ligands. The solid-state structure of I and 4 is reported. In h
eterobimetallic 4 the Pd(0) centre possesses a trigonal-planar environment
caused by the two eta (2)-coordinated Me3SiC equivalent toC ligands and the
datively bonded PPh3 group. The PPh3 moiety is thereby located out of the
best Ti(C equivalent to CSi)(2)Pd plane. Comparative cyclic voltammetric st
udies on complexes 1-4 as well as {[Ti](C equivalent to CPh)(2)}Ni(CO), for
comparison, are presented. These studies reveal a strong influence of the
eta (2)-coordinated low-valent transition metal complex fragments MX on the
reduction behaviour of the Ti(IV) centre. (C) 2001 Elsevier Science B.V. A
ll rights reserved.