Citation: Wb. Tolman et Dje. Spencer, New advances in ligand design for synthetic modeling of metalloprotein active sites, CURR OP C B, 5(2), 2001, pp. 188-195
Citation: Fa. Chavez et al., Metal ion complexation by a new, highly sterically hindered, bowl-shaped carboxylate ligand, CHEM COMMUN, (01), 2001, pp. 111-112
Authors:
Aubrecht, KB
Chang, K
Hillmyer, MA
Tolman, WB
Citation: Kb. Aubrecht et al., Lactide polymerization activity of alkoxide, phenoxide, and amide derivatives of yttrium(III) arylamidinates, J POL SC PC, 39(2), 2001, pp. 284-293
Citation: K. Bechtold et al., Perfectly alternating copolymer of lactic acid and ethylene oxide as a plasticizing agent for polylactide, MACROMOLEC, 34(25), 2001, pp. 8641-8648
Citation: Jl. Schneider et al., Copper(I) chemistry of bis(pyrazolyl)diphenylborate ligands: Formation of a heterocycle by Cu-mediated acetonitrile addition, INORG CHEM, 40(1), 2001, pp. 165
Authors:
George, SD
Metz, M
Szilagyi, RK
Wang, HX
Cramer, SP
Lu, Y
Tolman, WB
Hedman, B
Hodgson, KO
Solomon, EI
Citation: Sd. George et al., A quantitative description of the ground-state wave function of Cu-A by X-ray absorption spectroscopy: Comparison to plastocyanin and relevance to electron transfer, J AM CHEM S, 123(24), 2001, pp. 5757-5767
Authors:
O'Keefe, BJ
Monnier, SM
Hillmyer, MA
Tolman, WB
Citation: Bj. O'Keefe et al., Rapid and controlled polymerization of lactide by structurally characterized ferric alkoxides, J AM CHEM S, 123(2), 2001, pp. 339-340
Citation: Ag. Blackman et Wb. Tolman, Copper-dioxygen and copper-oxo species relevant to copper oxygenases and oxidases, STRUCT BOND, 97, 2000, pp. 179-211
Authors:
Chamberlain, BM
Jazdzewski, BA
Pink, M
Hillmyer, MA
Tolman, WB
Citation: Bm. Chamberlain et al., Controlled polymerization of DL-lactide and epsilon-caprolactone by structurally well-defined alkoxo-bridged di- and triyttrium(III) complexes, MACROMOLEC, 33(11), 2000, pp. 3970-3977
Authors:
Berreau, LM
Halfen, JA
Young, VG
Tolman, WB
Citation: Lm. Berreau et al., Heterocyclic donor influences on the binding and activation of CO, NO, andO-2 by copper complexes of hybrid triazacyclononane-pyridyl ligands, INORG CHIM, 297(1-2), 2000, pp. 115-128
Citation: Jr. Hagadorn et al., N-donor effects on carboxylate binding in mononuclear iron(II) complexes of a sterically hindered benzoate ligand, INORG CHEM, 39(26), 2000, pp. 6086-6090
Citation: Ba. Jazdzewski et Wb. Tolman, Understanding the copper-phenoxyl radical array in galactose oxidase: contributions from synthetic modeling studies, COORD CH RE, 200, 2000, pp. 633-685
Authors:
Randall, DW
George, SD
Holland, PL
Hedman, B
Hodgson, KO
Tolman, WB
Solomon, EI
Citation: Dw. Randall et al., Spectroscopic and electronic structural studies of blue copper model complexes. 2. Comparison of three- and four-coordinate Cu(II)-thiolate complexesand fungal laccase, J AM CHEM S, 122(47), 2000, pp. 11632-11648
Citation: Pl. Holland et Wb. Tolman, A structural model of the type 1 copper protein active site: N2S(thiolate)S(thioether) ligation in a Cu(II) complex, J AM CHEM S, 122(26), 2000, pp. 6331-6332
Citation: J. Cahoy et al., Experimental studies of the interconversion of mu-eta(2):eta(2)-peroxo- and bis(mu-oxo)dicopper complexes, INORG CHEM, 38(9), 1999, pp. 2161-2168
Citation: Pl. Holland et Wb. Tolman, Dioxygen activation by copper sites: relative stability and reactivity of (mu-eta(2):eta(2)-peroxo)- and bis(mu-oxo)dicopper cores, COORD CH RE, 192, 1999, pp. 855-869