S. Petoud et al., STABILITY AND SIZE-DISCRIMINATING EFFECTS IN MONONUCLEAR LANTHANIDE TRIPLE-HELICAL BUILDING-BLOCKS WITH TRIDENTATE AROMATIC LIGANDS, Inorganic chemistry, 36(25), 1997, pp. 5750-5760
The planar aromatic tridentate ligand 2,6-bis(1-methylbenzimidazol-2-y
l)pyridine (L-1) reacts with Ln(III) (Ln = La-Lu) in acetonitrile to g
ive the successive complexes [Ln(L-1)(m)](3+) (n = 1-3). Stability con
stants determined by spectrophotometry and potentiometric competitive
titrations with Ag-1 show that the 1:1 and the 1:2 complexes display t
he usual thermodynamic behavior associated with electrostatic effects
while the 1:3 complexes exhibit an unusual selectivity for the midrang
e Ln(III) ions (Delta log K-3(Gd-Lu)approximate to 4). A detailed inve
stigation of the solution structure of [Ln(L-1)(3)](3+) (Ln = La-Dy) r
eveals that the closely packed triple-helical structure found in the c
rystal structure of [EU(L-1)(3)](3+) is retained in acetonitrile for t
he complete series. A sharp control of the coordination cavity results
from the interstrand pi-stacking interactions which appear to be opti
mum for Gd-III. For Yb-III, for instance, a 1:2 complex, only could be
isolated, which crystallizes as a hydroxo-bridged dimer (2)-(ClO4)(4)
(HClO4)(0.5)(CH3(C)N)(7.32)(L-1)(0.5) (triclinic, P (1) over bar, a =
13.250(2) Angstrom, b = 16.329(2) Angstrom, c = 27.653(3) Angstrom, al
pha = 99.941(9)degrees, beta = 93.393(9)degrees, gamma = 108.114(9)deg
rees, Z = 2). The binding of bulky substituents to the nitrogen atoms
of the benzimidazole side arms in L-4 (i) severely affects the wrappin
g process, (ii) leads to less stable triple-helical building blocks, a
nd (iii) removes the size-discriminating effect. The last can however
be restored if a strong electron-donor group is connected to the centr
al pyridine ring in L-8. Stability and solution structure data for [Ag
-2(Li)(2)](2+) (i = 1, 4, 8) are also reported and discussed.