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Journal of the American Chemical Society|May 30, 2014
A macrocyclic chelator with unprecedented Th⁴⁺ affinityTiffany A Pham, Jide Xu, Kenneth N RaymondACS Chemical Biology|July 10, 2014
Direct evidence of iron uptake by the Gram-positive siderophore-shuttle mechanism without iron reductionTatsuya Fukushima, Benjamin E Allred, Kenneth N RaymondInorganic Chemistry|August 30, 2008
Use of YbIII-centered near-infrared (NIR) luminescence to determine the hydration state of a 3,2-HOPO-based MRI contrast agentEvan G Moore, Michael Seitz, Kenneth N RaymondInorganic Chemistry|August 30, 2008
Highly fluorescent group 13 metal complexes with cyclic, aromatic hydroxamic acid ligandsMichael Seitz, Evan G Moore, Kenneth N RaymondBioconjugate Chemistry|November 18, 2004
Estimating the number of bound waters in Gd(III) complexes revisited. Improved methods for the prediction of q-valuesBenjamin P Hay, Eric J Werner, Kenneth N RaymondInorganic Chemistry|January 14, 2009
Predicting efficient antenna ligands for Tb(III) emissionAmanda P S Samuel, Jide Xu, Kenneth N RaymondInorganic Chemistry|September 11, 1996
Nordesferriferrithiocin. Comparative Coordination Chemistry of a Prospective Therapeutic Iron Chelating Agent(1)Klaus Langemann, Daniel Heineke, Stefan Rupprecht, et al.Proceedings of the National Academy of Sciences of the United States of America|April 18, 2002
Iron uptake in ferritin is blocked by binding of [Cr(TREN)(H(2)O)(OH)](2+), a slow dissociating model for [Fe(H(2)O)(6)](2+)Carmen M Barnés, Elizabeth C Theil, Kenneth N RaymondJournal of the American Chemical Society|December 3, 2009
Enantioselective catalysis of the aza-Cope rearrangement by a chiral supramolecular assemblyCasey J Brown, Robert G Bergman, Kenneth N RaymondAccounts of Chemical Research|July 14, 2009
Proton-mediated chemistry and catalysis in a self-assembled supramolecular hostMichael D Pluth, Robert G Bergman, Kenneth N RaymondPageof 21