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Results 1-10 of 11 (Search time: 0.003 seconds).
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PreviewIssue DateTitleAuthor(s)
2005Oxygen Atom Transfer in Models for Molybdenum Enzymes: Isolation and Structural, Spectroscopic, and Computational Studies of Intermediates in Oxygen Atom Transfer from Molybdenum(VI) to Phosphorus(III)Millar, A.; Doonan, C.; Smith, P.; Nemykin, V.; Basu, P.; Young, C.
2015d¹ oxosulfido-Mo(V) compounds: first isolation and unambiguous characterization of an extended seriesDoonan, C.; Gourlay, C.; Nielsen, D.; Ng, V.; Smith, P.; Evans, D.; George, G.; White, J.; Young, C.
2008Electronic Structure Description of the cis-MoOS Unit in Models for Molybdenum HydroxylasesDoonan, C.; Rubie, N.; Peariso, K.; Harris, H.; Knottenbelt, S.; George, G.; Young, C.; Kirk, M.
2005Synthesis and characterisation of second-generation metallodithiolene complexes of the type [Tp*ME(dithiolene)] (M = Mo, W; E = O, S) and a novel 'organoscorpionate' complex of tungstenSproules, S.; Morgan, H.; Doonan, C.; White, J.; Young, C.
2005cis-dioxomolybdenum(VI) and oxo(phosphine oxide)molybdenum(IV) complexes: Steric and electronic fine-tuning of cis-[MoOS](2+) precursorsDoonan, C.; Millar, A.; Nielsen, D.; Young, C.
2009Synthesis and characterization of TpiPrMoO(S2PR2) (R = Pri, Ph, OEt, OPri, (-)-mentholate) and {HB(OMe)(Pripz)2}MoO(S2PPri2), including isomers of known 1,2-borotropically-shifted complexesYoung, C.; Malarek, M.; Evans, D.; Doonan, C.; Ng, V.; White, J.
2006Models for the Molybdenum Hydroxylases: Synthesis, Characterization and Reactivity of cis-Oxosulfido-Mo(VI) ComplexesDoonan, C.; Nielsen, D.; Smith, P.; White, J.; George, G.; Young, C.
2008A Novel Ligand Modification and Diamond-core Molybdenum(IV) 2,6-Bis(2,2-diphenyl-2-thioethyl)pyridinate(2-) ComplexGourlay, C.; Doonan, C.; White, J.; Young, C.
2000Transformations leading to the generation of dithiolene ligands initiated by reactions of sulfur-rich WS(S₂)(S₂CNR₂)₂ complexes with dimethyl acetylenedicarboxylate and phenylacetyleneLim, P.; Cook, V.; Doonan, C.; Young, C.; Tiekink, E.
2009Molybdenum X-ray absorption edges from 200 to 20,000 eV: The benefits of soft X-ray spectroscopy for chemical speciationGeorge, S.; Drury, O.; Fu, J.; Friedrich, S.; Doonan, C.; George, G.; White, J.; Young, C.; Cramer, S.