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Definition of the Labile Capping Bond Effect in Lanthanide Complexes

31

Citations

58

References

2016

Year

Abstract

Two macrocyclic ligands containing a cyclen unit, a methyl group, a picolinate arm, and two acetate pendant arms attached to two nitrogen atoms of the macrocycle either in trans (1,7-H<sub>3</sub> Medo2 ampa = 2,2'-(7-((6-carboxypyridin-2-yl)methyl)-10-methyl-1,4,7,10-tetraazacyclododecane-1,4-diyl)diacetic acid) or in cis (1,4-H<sub>3</sub> Medo2 ampa) positions are reported. These ligands provide eight-coordination to the Ln<sup>3+</sup> ions, leaving a coordination position available for a water molecule that occupies a capping position in the twisted square antiprismatic polyhedron (1,4-H<sub>3</sub> Medo2 ampa) or one of the positions of the square antiprism (1,7-H<sub>3</sub> Medo2 ampa). The charge neutral [Gd(1,7-Medo2 ampa)] complex presents an unprecedentedly low water-exchange rate (k<sub>ex</sub><sup>298</sup> =8.8×10<sup>3</sup> s<sup>-1</sup> ), whereas water exchange in [Gd(1,4-Medo2 ampa)] is three orders of magnitude faster (k<sub>ex</sub><sup>298</sup> =6.6×10<sup>6</sup> s<sup>-1</sup> ). These results showcase the labile capping bond phenomenon: A ligand occupying a capping position is hindered by the environment and thus is intrinsically labile.

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