Metal-ion selectivity by macrocyclic ligands. Part 2. The interaction of ZnII, CdII and HgII with pyridinyl-derived N3O2 macrocycles; X-Ray structures of one zinc and two cadmium endomacrocyclic complexes and of one zinc and one mercury exomacrocyclic complex
Abstract
The interaction of ZnII, CdII and HgII with the macrocycles L1 and L2, each containing an N3O2-donor set, has been investigated. Conductometric titration of the 1:1 complexes of ZnII and CdII with chloride in each case indicated the sequential formation of a 1:1 electrolyte of the type [ML(Cl)]+ and a 2:1 electrolyte of the type [MLCl2] in each case. Proton NMR titration of the ligands with M(O2CMe)2 in CD3OD gave evidence for the formation of 1:1 and 1:2 (metal : ligand) species. The stability constants of the complexes have been determined in 95% methanol. The X-ray crystal structures of the 1:1 complexes [ZnL1I2]·H2O, [ZnL1(NO3)]NO3, [CdL1(NO3)(MeOH)]NO3, [CdL2-(ClO4)(MeCN)]ClO4 and [HgL1I2] have been determined. The metal atoms in [ZnL1I2]·H2O and [HgL1I2] are four-co-ordinated in a tetrahedral geometry and lie outside the macrocyclic cavity. The donor set in each molecule comprises the two secondary amine nitrogen atoms from the macrocycle and the two iodide anions. The complex [ZnL1(NO3)]NO3 has all donors of the macrocycle co-ordinated with one oxygen from a nitrate anion occupying the sixth site to yield an approximately trigonal-prismatic geometry. The structure of [CdL1(NO3)(MeOH)]NO3 shows that the metal is seven-co-ordinated in an approximately pentagonal-bipyramidal environment consisting of the full donor set of the macrocycle together with one oxygen each from a nitrate anion and a methanol of solvation. The structure of [CdL2(ClO4)(MeCN)]ClO4 shows that the metal has a similar co-ordination environment consisting of the full donor set of the macrocycle together with an oxygen from a perchlorate anion and a nitrogen from acetonitrile of solvation.