| Literature DB >> 25914060 |
Benedict M Gardner1, Floriana Tuna2, Eric J L McInnes2, Jonathan McMaster1, William Lewis1, Alexander J Blake1, Stephen T Liddle3.
Abstract
Reaction of [U(Tren(TIPS))] [1, Tren(TIPS)=N(CH2CH2NSiiPr3)3] with 0.25 equivalents of P4 reproducibly affords the unprecedented actinide inverted sandwich cyclo-P5 complex [{U(Tren(TIPS))}2(μ-η(5):η(5)-cyclo-P5)] (2). All prior examples of cyclo-P5 are stabilized by d-block metals, so 2 shows that cyclo-P5 does not require d-block ions to be prepared. Although cyclo-P5 is isolobal to cyclopentadienyl, which usually bonds to metals via σ- and π-interactions with minimal δ-bonding, theoretical calculations suggest the principal bonding in the U(P5)U unit is polarized δ-bonding. Surprisingly, the characterization data are overall consistent with charge transfer from uranium to the cyclo-P5 unit to give a cyclo-P5 charge state that approximates to a dianionic formulation. This is ascribed to the larger size and superior acceptor character of cyclo-P5 compared to cyclopentadienyl, the strongly reducing nature of uranium(III), and the availability of uranium δ-symmetry 5f orbitals.Entities:
Keywords: cyclo-P5; density functional theory; phosphorus; uranium; δ bonding
Year: 2015 PMID: 25914060 PMCID: PMC4517156 DOI: 10.1002/anie.201501728
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336
Figure 1Molecular structure of [{U(TrenTIPS)}2(μ-η5:η5-cyclo-P5)] (2).[20] Ellipsoids are set at 50 % probability; hydrogen atoms and disorder components are omitted for clarity. Selected bond lengths [Å]: U1–P1 3.335(6), U1–P2 3.243(6), U1–P2B 3.303(7), U1–P3 3.265(7), P3B 3.255(6), U1–N1 2.254(7), U1–N2 2.255(7), U1–N3 2.273(7), U1–N4 2.701(8), P1–P2 1.996(6), P1–P3 2.006(6), P2–P2B 2.002(6), P3–P3B 2.008(8), P2B–P3B 2.018(6).
Figure 2Temperature dependence of the effective magnetic moment of 2 recorded at 0.1 T applied field. Inset: Plot of M(H) at 1.8 K.
Figure 3α-spin Kohn Sham orbitals which represent the principal components of the δ-bonding in the U(P5)U unit of 2 at the 0.03 e Å3 isosurface level. Hydrogen atoms are omitted for clarity. a) HOMO−3 (472a, −4.070 eV); b) HOMO−4 (471a, −4.098 eV).