1 |
Nickel oxidation states of F-430 cofactor in methyl-coenzyme M reductase Craft JL, Horng YC, Ragsdale SW, Brunold TC Journal of the American Chemical Society, 126(13), 4068, 2004 |
2 |
Rapid ligand exchange in the MCRred1 form of methyl-coenzyme m reductase Singh K, Horng YC, Ragsdale SW Journal of the American Chemical Society, 125(9), 2436, 2003 |
3 |
X-ray absorption and resonance Raman studies of methyl-coenzyme M reductase indicating that ligand exchange and macrocycle reduction accompany reductive activation Tang Q, Carrington PE, Horng YC, Maroney MJ, Ragsdale SW, Bocian DF Journal of the American Chemical Society, 124(44), 13242, 2002 |
4 |
Cryoreduction of methyl-coenzyme M reductase: EPR characterization of forms, MCRox1 and MCRred1 Telser J, Davydov R, Horng YC, Ragsdale SW, Hoffman BM Journal of the American Chemical Society, 123(25), 5853, 2001 |
5 |
On the assignment of nickel oxidation states of the Ox1, Ox2 forms of methyl-coenzyme M reductase Telser J, Horng YC, Becker DF, Hoffman BM, Ragsdale SW Journal of the American Chemical Society, 122(1), 182, 2000 |
6 |
Distorted square planar Ni(II)-chalcogenolate carbonyl complexes [Ni(CO)(SPh)(n)(SePh)(3-n)](-) (n=0, 1, 2): Relevance to the nickel site in CO dehydrogenases and [NiFeSe] hydrogenase Liaw WF, Horng YC, Ou DS, Ching CY, Lee GH, Peng SM Journal of the American Chemical Society, 119(39), 9299, 1997 |
7 |
Synthesis and Characterization of Polymeric Ag(I)-Telluroether and Cu(I)-Diorganyl Ditelluride Complexes - Crystal-Structures of (Ag(Mete(CH2)(3)Teme)(2))(N)(BF4)(N), ((Mu(2)-Meteteme)Cu(Mu-Cl))(N), and (Ag-2(Ncch3)(4)(Mu(2)-(P-C6H4F)Tete(P-C6H4F))(2))(BF4)(2) Liaw WF, Lai CH, Chiou SJ, Horng YC, Chou CC, Liaw MC, Lee GH, Peng SM Inorganic Chemistry, 34(14), 3755, 1995 |
8 |
Bis(Selenolate) and bis(Thiolate) Derivatives of Iron(II) Phosphine Complexes - Crystal-Structure of Cis,Cis,Trans-Fe(Co)2(Seme)2(PMe3)2 Liaw WF, Ou DS, Horng YC, Lai CH, Lee GH, Peng SM Inorganic Chemistry, 33(11), 2495, 1994 |