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Nature|September 19, 2008
Biologically inspired oxidation catalysisLawrence Que, William B Tolman
Angewandte Chemie (International Ed. in English)|December 20, 2002
Bis(mu-oxo)dimetal "diamond" cores in copper and iron complexes relevant to biocatalysisLawrence Que, William B Tolman
Inorganic Chemistry|September 27, 2006
Mononitrosyl iron complexes supported by sterically hindered carboxylate ligandsDavid P Klein, Victor G Young, William B Tolman, et al.
Inorganic Chemistry|September 27, 2006
Self-assembly of the 2-His-1-carboxylate facial triad in mononuclear iron(II) and zinc(II) models of metalloenzyme active sitesSeth J Friese, Benjamin E Kucera, Lawrence Que, et al.
Inorganic Chemistry|January 26, 2008
Iron(II) complexes of sterically bulky alpha-ketocarboxylates. structural models for alpha-ketoacid-dependent nonheme iron halogenasesSeth J Friese, Benjamin E Kucera, Victor G Young, et al.
Inorganic Chemistry|November 12, 2019
Carboxylate Structural Effects on the Properties and Proton-Coupled Electron Transfer Reactivity of [CuO<sub>2</sub>CR]<sup>2+</sup> CoresCourtney E Elwell, Mukunda Mandal, Caitlin J Bouchey, et al.
Inorganic Chemistry|March 17, 2004
Mechanistic studies on the formation and reactivity of dioxygen adducts of diiron complexes supported by sterically hindered carboxylatesSergey V Kryatov, Ferman A Chavez, Anne M Reynolds, et al.
Angewandte Chemie (International Ed. in English)|January 9, 2010
Binding and activation of N2O at transition-metal centers: recent mechanistic insightsWilliam B Tolman
Journal of Biological Inorganic Chemistry : JBIC : a Publication of the Society of Biological Inorganic Chemistry|February 1, 2006
Using synthetic chemistry to understand copper protein active sites: a personal perspectiveWilliam B Tolman
Journal of Biological Inorganic Chemistry : JBIC : a Publication of the Society of Biological Inorganic Chemistry|October 1, 2011
Type 1 copper site synthetic model complexes with increased redox potentialsLei Yang, William B Tolman
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