Stéphanie M. Cornet
University of Manchester
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Dalton Transactions | 2011
Michael P. Redmond; Stéphanie M. Cornet; Sean D. Woodall; Daniel M. Whittaker; David Collison; Madeleine Helliwell; Louise S. Natrajan
We describe the synthesis, solid state and solution properties of two families of uranyl(VI) complexes that are ligated by neutral monodentate and anionic bidentate P=O, P=NH and As=O ligands bearing pendent phenyl chromophores. The uranyl(VI) ions in these complexes possess long-lived photoluminescent LMCT (3)Π(u) excited states, which can be exploited as a sensitive probe of electronic structure, bonding and aggregation behaviour in non-aqueous media. For a family of well defined complexes of given symmetry in trans-[UO(2)Cl(2)(L(2))] (L = Ph(3)PO (1), Ph(3)AsO (2) and Ph(3)PNH (3)), the emission spectral profiles in CH(2)Cl(2) are indicative of the strength of the donor atoms bound in the equatorial plane and the uranyl bond strength; the uranyl LMCT emission maxima are shifted to lower energy as the donor strength of L increases. The luminescence lifetimes in fluid solution mirror these observations (0.87-3.46 μs) and are particularly sensitive to vibrational and bimolecular deactivation. In a family of structurally well defined complexes of the related anion, tetraphenylimidodiphosphinate (TPIP), monometallic complexes, [UO(2)(TPIP)(thf)] (4), [UO(2)(TPIP)(Cy(3)PO)] 5), a bimetallic complex [UO(2)(TPIP)(2)](2) (6) and a previously known trimetallic complex, [UO(2)(TPIP)(2)](3) (7) can be isolated by variation of the synthetic procedure. Complex 7 differs from 6 as the central uranyl ion in 7 is orthogonally connected to the two peripheral ones via uranyl → uranium dative bonds. Each of these oligomers exhibits a characteristic optical fingerprint, where the emission maxima, the spectral shape and temporal decay profiles are unique for each structural form. Notably, excited state intermetallic quenching in the trimetallic complex 7 considerably reduces the luminescence lifetime with respect to the monometallic counterpart 5 (from 2.00 μs to 1.04 μs). This study demonstrates that time resolved and multi-parametric luminescence can be of value in ascertaining solution and structural forms of discrete uranyl(VI) complexes in non-aqueous solution.
Physical Review Letters | 2010
N. Magnani; E. Colineau; R. Eloirdi; J.-C. Griveau; R. Caciuffo; Stéphanie M. Cornet; Iain May; Clint A. Sharrad; David Collison; Richard E. P. Winpenny
Chemical Communications | 2009
Stéphanie M. Cornet; L. Jonas L. Häller; Mark J. Sarsfield; David Collison; Madeleine Helliwell; Iain May; Nikolas Kaltsoyannis
Inorganic Chemistry | 2010
Claude Berthon; Nathalie Boubals; I. A. Charushnikova; David Collison; Stéphanie M. Cornet; Christophe Den Auwer; Andrew J. Gaunt; Nikolas Kaltsoyannis; Iain May; Sébastien Petit; Michael P. Redmond; Sean D. Reilly; Brian L. Scott
Inorganic Chemistry | 2007
L. Jonas L. Häller; Nikolas Kaltsoyannis; Mark J. Sarsfield; Iain May; Stéphanie M. Cornet; Michael P. Redmond; Madeleine Helliwell
Inorganic Chemistry | 2005
Mark J. Sarsfield; Iain May; Stéphanie M. Cornet; Madeleine Helliwell
Polyhedron | 2009
Stéphanie M. Cornet; Iain May; Michael P. Redmond; Andrew J. Selvage; Clint A. Sharrad; Olivier Rosnel
Comptes Rendus Chimie | 2010
Stéphanie M. Cornet; Michael P. Redmond; David Collison; Clint A. Sharrad; Madeleine Helliwell; John Warren
Journal of Alloys and Compounds | 2007
Iain May; Roy Copping; Stéphanie M. Cornet; Catherine E. Talbot-Eeckelears; Andrew J. Gaunt; Gordon H. John; Mike P. Redmond; Clint A. Sharrad; Andrew D. Sutton; David Collison; O. Danny Fox; Christopher J. Jones; Mark J. Sarsfield; Robin J. Taylor
Journal of Alloys and Compounds | 2007
Stéphanie M. Cornet; Iain May; Mark J. Sarsfield; Nikolas Kaltsoyannis; Jonas Haller; Christophe Den Auwer; Daniel Meyer