Miguirditchian Manuel, Guillaneux Denis, Guillaumont Dominique, Moisy Philippe, Madic Charles, Jensen Mark P, Nash Kenneth L
CEA-Valrhô, DEN/DRCP/SCPS, B.P. 17171, 30207 Bagnols-sur-Cèze Cedex, France.
Inorg Chem. 2005 Mar 7;44(5):1404-12. doi: 10.1021/ic0488785.
To better understand the bonding in complexes of f-elements by polydentate N-donor ligands, the complexation of americium(III) and lanthanide(III) cations by 2-amino-4,6-di-(pyridin-2-yl)-1,3,5-triazine (ADPTZ) was studied using a thermodynamic approach. The stability constants of the 1:1 complexes in a methanol/water mixture (75/25 vol %) were determined by UV-visible spectrophotometry for every lanthanide(III) ion (except promethium), and yttrium(III) and americium(III) cations. The thermodynamic parameters (DeltaH degrees , DeltaS degrees) of complexation were determined from the temperature dependence of the stability constants and by microcalorimetry. The trends of the variations of DeltaG degrees , DeltaH degrees , and DeltaS degrees across the lanthanide series are compared with published results for other tridentate ligands and confirm strongly ionic bonding in the lanthanide-ADPTZ complexes. Comparison of the thermodynamic properties between the Am- and Ln-ADPTZ complexes highlights an increase in stability of the complexes by a factor of 20 in favor of the americium cation. This difference arises from a more exothermic reaction enthalpy in the case of Am, which is correlated with a greater degree of covalency in the americium-nitrogen bonds. Quantum chemistry calculations performed on a series of trivalent actinide and lanthanide-ADPTZ complexes support the experimental results, showing a slightly greater covalence in the actinide-ligand bonds that originates from a charge transfer from the ligand sigma orbitals to the 5f and 6d orbitals of the actinide ion.
为了更好地理解多齿氮供体配体与f元素配合物中的键合情况,采用热力学方法研究了2-氨基-4,6-二(吡啶-2-基)-1,3,5-三嗪(ADPTZ)与镅(III)和镧系(III)阳离子的络合作用。通过紫外可见分光光度法测定了甲醇/水混合物(75/25体积%)中1:1配合物对于每个镧系(III)离子(除钷外)、钇(III)和镅(III)阳离子的稳定常数。通过稳定常数的温度依赖性以及微量量热法确定了络合作用的热力学参数(ΔH°,ΔS°)。将镧系系列中ΔG°、ΔH°和ΔS°的变化趋势与其他三齿配体的已发表结果进行比较,有力地证实了镧系-ADPTZ配合物中存在强离子键。比较Am-ADPTZ和Ln-ADPTZ配合物的热力学性质,结果表明配合物的稳定性提高了20倍,更有利于镅阳离子。这种差异源于镅的反应焓更负,这与镅-氮键中更高的共价程度相关。对一系列三价锕系和镧系-ADPTZ配合物进行的量子化学计算支持了实验结果,表明锕系-配体键中的共价性略高,这源于从配体σ轨道到锕系离子的5f和6d轨道的电荷转移。