1 |
Reduced mono-, di-, and tetracubane-type clusters containing the [MoFe3S4](2+) core stabilized by tertiary phosphine ligation Osterloh F, Segal BM, Achim C, Holm RH Inorganic Chemistry, 39(5), 980, 2000 |
2 |
Magnetic circular dichroism study of the all-ferrous [4Fe-4S] cluster of the Fe-protein of Azotobacter vinelandii nitrogenase Yoo SJ, Angove HC, Burgess BK, Munck E, Peterson J Journal of the American Chemical Society, 120(37), 9704, 1998 |
3 |
Synthesis of a (Fe4S4)-S-Ferriheme Bridged Assembly Containing an Isobacteriochlorin Component - A Further Analog of the Active-Site of Sulfite Reductase Zhou CY, Cai LS, Holm RH Inorganic Chemistry, 35(10), 2767, 1996 |
4 |
Interaction of Tl+ and Cs+ with the (Fe3S4) Cluster of Pyrococcus-Furiosus Ferredoxin - Investigation by Resonance Raman, MCD, EPR, and ENDOR Spectroscopy Fu WG, Telser J, Hoffman BM, Smith ET, Adams MW, Finnegan MG, Conover RC, Johnson MK Journal of the American Chemical Society, 116(13), 5722, 1994 |
5 |
Synthesis and Electron Delocalization of (Fe4S4)-S-Fe(III) Bridged Assemblies Related to the Exchange-Coupled Catalytic Site of Sulfite Reductases Cai LS, Holm RH Journal of the American Chemical Society, 116(16), 7177, 1994 |
6 |
Direct Reversible Protein Electrochemistry at a Pyrolytic-Graphite Electrode - Characterization of the Redox Thermodynamics of the Fe4S4 Siroheme Prosthetic Center in the Hexameric Dissimilatory Sulfite Reductase and the Monomeric Assimilatory Sulfite Reductase from Desulfovibrio-Vulgaris (Hildenborough) - Systematic pH Titration Experiments and Implications for Active-Site Chemistry Lui SM, Cowan JA Journal of the American Chemical Society, 116(25), 11538, 1994 |