Comparative Analysis of Mononuclear 1:1 and 2:1 Tetravalent Actinide (U, Th, Np) Complexes: Crystal Structure, Spectroscopy, and Electrochemistry.

Inorganic chemistry(2022)

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摘要
Six mononuclear tetravalent actinide complexes (-) have been synthesized using a new Schiff base ligand 2-methoxy-6-(((2-methyl-1-(pyridin-2-yl)propyl)imino)methyl)phenol (). The is treated with tetravalent actinide elements in varied stoichiometries to afford mononuclear 1:1 complexes [MCl-THF] (-) and 2:1 complexes [MCl-] (-) (M = Th ( and ), U ( and ), and Np ( and )). All complexes are characterized using different analytical techniques such as IR, NMR, and absorption spectroscopy as well as crystallography. UV-vis spectroscopy revealed more red-shifted absorption spectra for 2:1 complexes as compared to 1:1 complexes. H NMR of Th(IV) complexes exhibit diamagnetic spectra, whereas U(IV) and Np(IV) complexes revealed paramagnetically shifted H NMR. Interestingly, NMR signals are paramagnetically shifted between -70 and 40 ppm in and but are confined within -35 to 25 ppm in 2:1 complexes and . Single-crystal structures for 1:1 complexes revealed an eight-coordinated Th(IV) complex () and seven-coordinated U(IV) () and Np(IV) () complexes. However, all 2:1 complexes - were isolated as eight-coordinated isostructural molecules. The geometry around the Th center in is found to be trigonal dodecahedral and capped trigonal prismatic around U(IV) and Np(IV) centers in and , respectively. However, An centers in 2:1 complexes are present in dodecahedral geometry. Importantly, 2:1 complexes exhibit increased bond distances in comparison to their 1:1 counterparts as well as interesting bond modulation with respect to ionic radii of An(IV) centers. Cyclic voltammetry displays an increased oxidation potential of the ligand by 300-500 mV, after coordination with An. CV studies indicate Th(IV)/Th(II) reduction beyond -2.3 V, whereas attempts were made to identify redox potentials for U(IV) and Np(IV) centers. Spectroscopic binding studies reveal that complex stability in 1:1 stoichiometry follows the order Th ≈ U > Np.
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