Cytochrome P450 compound I: capture, characterization, and CH bond activation kinetics J Rittle, MT Green Science 330 (6006), 933-937, 2010 | 1421 | 2010 |
Catalytic conversion of nitrogen to ammonia by an iron model complex JS Anderson, J Rittle, JC Peters Nature 501 (7465), 84-87, 2013 | 971 | 2013 |
Iron(IV)hydroxide pKa and the Role of Thiolate Ligation in C–H Bond Activation by Cytochrome P450 TH Yosca, J Rittle, CM Krest, EL Onderko, A Silakov, JC Calixto, ... Science 342 (6160), 825-829, 2013 | 332 | 2013 |
An Fe-N2 Complex That Generates Hydrazine and Ammonia via FeNNH2: Demonstrating a Hybrid Distal-to-Alternating Pathway for N2 Reduction J Rittle, JC Peters Journal of the American Chemical Society 138 (12), 4243-4248, 2016 | 223 | 2016 |
Reactive intermediates in cytochrome P450 catalysis CM Krest, EL Onderko, TH Yosca, JC Calixto, RF Karp, J Livada, J Rittle, ... Journal of Biological Chemistry 288 (24), 17074-17081, 2013 | 223 | 2013 |
Characterization of an FeN–NH2 Intermediate Relevant to Catalytic N2 Reduction to NH3 JS Anderson, GE Cutsail III, J Rittle, BA Connor, WA Gunderson, L Zhang, ... Journal of the American Chemical Society 137 (24), 7803-7809, 2015 | 176 | 2015 |
Fe–N2/CO complexes that model a possible role for the interstitial C atom of FeMo-cofactor (FeMoco) J Rittle, JC Peters Proceedings of the National Academy of Sciences 110 (40), 15898-15903, 2013 | 148 | 2013 |
Two‐Coordinate Fe0 and Co0 Complexes Supported by Cyclic (alkyl)(amino) carbenes G Ung, J Rittle, M Soleilhavoup, G Bertrand, JC Peters Angewandte Chemie International Edition 53 (32), 8427-8431, 2014 | 129 | 2014 |
Significantly shorter Fe–S bond in cytochrome P450-I is consistent with greater reactivity relative to chloroperoxidase CM Krest, A Silakov, J Rittle, TH Yosca, EL Onderko, JC Calixto, ... Nature chemistry 7 (9), 696-702, 2015 | 103 | 2015 |
Cytochrome P450: the active oxidant and its spectrum J Rittle, JM Younker, MT Green Inorganic chemistry 49 (8), 3610-3617, 2010 | 99 | 2010 |
Heterometallic triiron-oxo/hydroxo clusters: effect of redox-inactive metals DE Herbert, D Lionetti, J Rittle, T Agapie Journal of the American Chemical Society 135 (51), 19075-19078, 2013 | 95 | 2013 |
A 106-Fold Enhancement in N2-Binding Affinity of an Fe2(μ-H)2 Core upon Reduction to a Mixed-Valence FeIIFeI State J Rittle, CCL McCrory, JC Peters Journal of the American Chemical Society 136 (39), 13853-13862, 2014 | 90 | 2014 |
An efficient, step-economical strategy for the design of functional metalloproteins J Rittle, MJ Field, MT Green, FA Tezcan Nature chemistry 11 (5), 434-441, 2019 | 63 | 2019 |
N–H Bond Dissociation Enthalpies and Facile H Atom Transfers for Early Intermediates of Fe–N2 and Fe–CN Reductions J Rittle, JC Peters Journal of the American Chemical Society 139 (8), 3161-3170, 2017 | 52 | 2017 |
Proton‐Coupled Reduction of an Iron Cyanide Complex to Methane and Ammonia J Rittle, JC Peters Angewandte Chemie International Edition 55 (40), 12262-12265, 2016 | 35 | 2016 |
Redox-dependent metastability of the nitrogenase P-cluster HL Rutledge, J Rittle, LM Williamson, WA Xu, DM Gagnon, FA Tezcan Journal of the American Chemical Society 141 (25), 10091-10098, 2019 | 32 | 2019 |
A Ni0(η2-(Si–H))(η2-H2) Complex That Mediates Facile H Atom Exchange between Two σ-Ligands BA Connor, J Rittle, D VanderVelde, JC Peters Organometallics 35 (5), 686-690, 2016 | 28 | 2016 |
A practical synthesis of ammonia from nitrogen gas, samarium diiodide and water catalyzed by a molybdenum–PCP pincer complex Y Ashida, S Kondo, K Arashiba, T Kikuchi, K Nakajima, S Kakimoto, ... Synthesis 51 (20), 3792-3795, 2019 | 22 | 2019 |
Structure and Reactivity of a High-Spin, Nonheme Iron (III)-Superoxo Complex Supported by Phosphinimide Ligands C Winslow, HB Lee, MJ Field, SJ Teat, J Rittle Journal of the American Chemical Society 143 (34), 13686-13693, 2021 | 20 | 2021 |
Heterometallic Effects in Trinuclear Complexes Supported by p-Terphenyl Diphosphine Ligands KT Horak, S Lin, J Rittle, T Agapie Organometallics 34 (18), 4429-4432, 2015 | 17 | 2015 |