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Complexation of Lanthanides with Glutaroimide-dioxime: Binding Strength and Coordination Modes

Seraj A. AnsariChemical Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United StatesYanqiu YangChemical Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United StatesZhicheng ZhangChemical Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United StatesKevin J. GagnonAdvanced Light Source, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United StatesSimon J. TeatAdvanced Light Source, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United StatesShunzhong LuoInstitute of Nuclear Physics and Chemistry, CAEP, Mianyang, 621900, ChinaLinfeng RaoChemical Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States
Inorganic Chemistryjournal2016en
ABI

Аннотация

The complexation of lanthanides (Nd(3+) and Eu(3+)) with glutaroimide-dioxime (H2L), a cyclic imide dioxime ligand that has been found to form stable complexes with actinides (UO2(2+) and NpO2(+)) and transition metal ions (Fe(3+), Cu(2+), etc.), was studied by potentiometry, absorption spectrophotometry, luminescence spectroscopy, and microcalorimetry. Lanthanides form three successive complexes, M(HL)(2+), M(HL)L, and M(HL)2(+) (where M stands for Nd(3+)/Eu(3+) and HL(-) stands for the singly deprotonated ligand). The enthalpies of complexation, determined by microcalorimetry, show that the formation of these complexes is exothermic. The stability constants of Ln(3+)/H2L complexes are several orders of magnitude lower than that of the corresponding Fe(3+)/H2L complexes but are comparable with that of UO2(2+)/H2L complexes. A structure of Eu(3+)/H2L complex, identified by single-crystal X-ray diffractometry, shows that the ligand coordinates to Eu(3+) in a tridentate mode, via the two oxygen atoms of the oxime group and the nitrogen atom of the imide group. The relocation of protons of the oxime groups (-CH═N-OH) from the oxygen to the nitrogen atom, and the deprotonation of the imide group (-CH-NH-CH-) result in a conjugated system with delocalized electron density on the ligand (-O-N-C-N-C-N-O-) that forms strong complexes with the lanthanide ions.

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