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Journal of Biological Inorganic Chemistry : JBIC : a Publication of the Society of Biological Inorganic Chemistry|March 16, 2007
Computational modeling of factors that modulate the unique FeNO bonding in {FeNO}(6) heme-thiolate model complexesDouglas P Linder, Kenton R RodgersInorganic Chemistry|March 1, 2005
Fe-N-O structure and bonding in six-coordinate {FeNO}6 porphyrinates containing imidazole: implications for reactivity of coordinated NODouglas P Linder, Kenton R RodgersInorganic Chemistry|November 8, 2005
Structural, electronic, and vibrational characterization of Fe-HNO porphyrinates by density functional theoryDouglas P Linder, Kenton R RodgersThe Journal of Physical Chemistry. B|August 29, 2015
Methanethiol Binding Strengths and Deprotonation Energies in Zn(II)-Imidazole Complexes from M05-2X and MP2 Theories: Coordination Number and Geometry Influences Relevant to Zinc EnzymesDouglas P Linder, Kenton R RodgersJournal of Inorganic Biochemistry|April 7, 2005
Insights into heme-based O2 sensing from structure-function relationships in the FixL proteinsKenton R Rodgers, Gudrun S Lukat-RodgersJournal of Inorganic Biochemistry|May 12, 2004
Structural and spectroscopic studies of tripodal [MgL]2+ chelates containing only nitrogen donor atoms: alkaline earth metal complexes as potential drug delivery agentsHongshan He, Kenton R Rodgers, Atta M ArifPhysical Chemistry Chemical Physics : PCCP|September 22, 2018
[(H2O)Zn(Imidazole)n]2+: the vital roles of coordination number and geometry in Zn-OH2 acidity and catalytic hydrolysisDouglas P Linder, Brett E Baker, Kenton R RodgersJournal of the American Chemical Society|August 9, 2003
A novel kinetic trap for NO release from cytochrome c': a possible mechanism for NO release from activated soluble guanylate cyclaseColin R Andrew, Kenton R Rodgers, Robert R EadyInorganic Chemistry|October 24, 2001
Synthesis and Characterization of Dimeric Mutually Coordinated Magnesium meso-2-PyridylporphyrinsNikolay N. Gerasimchuk, Andrew A. Mokhir, Kenton R. RodgersInorganic Chemistry|October 11, 2005
Structural and spectroscopic study of reactions between chelating zinc-binding groups and mimics of the matrix metalloproteinase and disintegrin metalloprotease catalytic sites: the coordination chemistry of metalloprotease inhibitionHongshan He, David T Puerta, Seth M Cohen, et al.Pageof 6