New amide-containing ferrocenyl ligands, L1-5 were prepared and the voltamm
etric and H-1 NMR investigations of anion binding were carried out in organ
ic media. The electrochemical recognition ability of L1-5 towards F-, HSO4-
, H2PO4- and ATP(2-) is based on the synergy between H-bonding to amide pro
tons in anion complexation to reduced, neutral ligands and ion-pairing inte
ractions developed with the oxidized, cationic form of the ligands. The str
ength of the anion-ligand interactions depends on the number of ferrocene c
enters and amide groups in the receptor, and on the accessibility of the bi
nding sites. Clear two-wave cyclic voltammetry features allowed the amperom
etric titration of H2PO4- and ATP(2-) by ligands L-4 and L-5 built from a c
yclotriveratrylene structural unit, and containing a combination of three f
errocene centers with three (L-4) or six (L-5) amide groups. (C) 2001 Elsev
ier Science B.V. All rights reserved.