Study of the An–Cl bond contraction in actinide trichlorides

The variation of the An–Cl bond distance in ground-state actinide trichloride (AnCl 3 ) molecules has been studied by density functional theory calculations using the B3LYP exchange–correlation functional in conjunction with small-core relativistic energy-consistent pseudopotentials for the actinide...

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Veröffentlicht in:Structural chemistry 2014-06, Vol.25 (3), p.991-996
Hauptverfasser: Kovács, Attila, Konings, Rudy J. M., Szieberth, Dénes, Krámos, Balázs
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Sprache:eng
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Zusammenfassung:The variation of the An–Cl bond distance in ground-state actinide trichloride (AnCl 3 ) molecules has been studied by density functional theory calculations using the B3LYP exchange–correlation functional in conjunction with small-core relativistic energy-consistent pseudopotentials for the actinides. The ground electronic states and the ground-state molecular properties of the trichlorides of heavy actinides (An = Bk–Lr) are reported in this paper the first time. Extending the present results with literature data on the light actinide trichlorides (AnCl 3 , An = Th–Cm), the trend in the bond distance has been evaluated for the whole actinide row. The contraction is well manifested in the major part of the actinide row (An = U–Fm). The deviations at the beginning (Th, Pa) and end of the row (Md, No) have been explained by minor differences in the bonding interactions.
ISSN:1040-0400
1572-9001
DOI:10.1007/s11224-014-0406-6