The iron-molybdenum cofactor of nitrogenase
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December 1990 |
Structural models for the metal centers in the nitrogenase molybdenum-iron protein
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September 1992 |
Nitrogenase MoFe-Protein at 1.16 A Resolution: A Central Ligand in the FeMo-Cofactor
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September 2002 |
Evidence for Interstitial Carbon in Nitrogenase FeMo Cofactor
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November 2011 |
Mechanism of Molybdenum Nitrogenase
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January 1996 |
Structure−Function Relationships of Alternative Nitrogenases
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January 1996 |
Recent advances in the chemistry of nitrogen fixation
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December 1978 |
Recent Advances in the Chemistry of Dinitrogen Complexes
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June 1995 |
Catalytic Reduction of Dinitrogen to Ammonia at a Single Molybdenum Center
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July 2003 |
A molybdenum complex bearing PNP-type pincer ligands leads to the catalytic reduction of dinitrogen into ammonia
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December 2010 |
Chemistry: Cyclic fixation of nitrogen
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October 1985 |
Electrosynthesis of ammonia
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October 1985 |
CHEMISTRY: So That's How It's Done--Maybe
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July 2003 |
Molybdenum does it again
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January 2011 |
Climbing Nitrogenase: Toward a Mechanism of Enzymatic Nitrogen Fixation
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May 2009 |
Evidence for an alternative nitrogen fixation system in Azotobacter vinelandii.
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December 1980 |
Comparative Biochemical Characterization of the Iron-Only Nitrogenase and the Molybdenum Nitrogenase from Rhodobacter Capsulatus
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March 1997 |
Structure of the FeFe-cofactor of the iron-only nitrogenase and possible mechanism for dinitrogen reduction
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January 2004 |
Terminal Nitrido and Imido Complexes of the late Transition Metals
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March 2009 |
Formation of Ammonia from an Iron Nitrido Complex
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April 2009 |
Iron–dinitrogen coordination chemistry: Dinitrogen activation and reactivity
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September 2010 |
ME and ME complexes of iron and cobalt that emphasize three-fold symmetry (E=O, N, NR)
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April 2011 |
Synthesis and Electronic Structure Determination of N -Alkyl-Substituted Bis(imino)pyridine Iron Imides Exhibiting Spin Crossover Behavior
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November 2011 |
Catalytic C−H Bond Amination from High-Spin Iron Imido Complexes
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April 2011 |
Metal–Metal Interactions in C 3 -Symmetric Diiron Imido Complexes Linked by Phosphinoamide Ligands
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December 2012 |
Recent developments in the homogeneous reduction of dinitrogen by molybdenum and iron
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May 2013 |
Mixed-Valence Dinitrogen-Bridged Fe(0)/Fe(II) Complex
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October 2010 |
Coordination of a Complete Series of N 2 Reduction Intermediates (N 2 H 2 , N 2 H 4 , and NH 3 ) to an Iron Phosphine Scaffold
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October 2011 |
N2 Reduction and Hydrogenation to Ammonia by a Molecular Iron-Potassium Complex
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November 2011 |
Transformation of an [Fe(η2-N2H3)]+ Species to π-Delocalized [Fe2(μ-N2H2)]2+/+ Complexes
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March 2011 |
Characterization of an Intermediate in the Ammonia-Forming Reaction of Fe(DMeOPrPE) 2 N 2 with Acid (DMeOPrPE = 1,2-[bis(dimethoxypropyl)phosphino]ethane)
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November 2013 |
Multimetallic cooperativity in activation of dinitrogen at iron–potassium sites
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January 2014 |
Alkali Metal Control over N–N Cleavage in Iron Complexes
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November 2014 |
A 10 6 -Fold Enhancement in N 2 -Binding Affinity of an Fe 2 (μ-H) 2 Core upon Reduction to a Mixed-Valence Fe II Fe I State
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September 2014 |
A Tetrahedrally Coordinated L 3 Fe−N x Platform that Accommodates Terminal Nitride (Fe IV ⋮N) and Dinitrogen (Fe I −N 2 −Fe I ) Ligands
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May 2004 |
Synthesis and characterization of cationic iron complexes supported by the neutral ligands NP i -Pr 3 , NArP i -Pr 3 , and NS t -Bu 3
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April 2005 |
On the feasibility of N2 fixation via a single-site FeI/FeIV cycle: Spectroscopic studies of FeI(N2)FeI, FeIVN, and related species
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November 2006 |
Triggering N2 uptake via redox-induced expulsion of coordinated NH3 and N2 silylation at trigonal bipyramidal iron
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May 2010 |
Terminal Iron Dinitrogen and Iron Imide Complexes Supported by a Tris(phosphino)borane Ligand
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January 2011 |
N 2 Functionalization at Iron Metallaboratranes
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November 2011 |
Conversion of Fe–NH 2 to Fe–N 2 with release of NH 3
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December 2012 |
Catalytic conversion of nitrogen to ammonia by an iron model complex
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September 2013 |
Catalytic Reduction of N 2 to NH 3 by an Fe–N 2 Complex Featuring a C-Atom Anchor
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January 2014 |
Preparation and properties of dinitrogen-molybdenum complexes. 3. Preparation and molecular structure of 1-(.eta.-hydrazido(2-))fluorobis[1,2-bis(diphenylphosphino)ethane]molybdenum tetrafluoroborate-dichloromethane solvate, [Mo(N2H2)F(Ph2PCH2CH2PPh2)2][BF4].CH2Cl2
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November 1976 |
The structural characterization of two isomeric hydrazido(2-) intermediates in the conversion of molybdenum-bound dinitrogen to ammonia and hydrazine
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February 1986 |
Studies Relevant to Catalytic Reduction of Dinitrogen to Ammonia by Molybdenum Triamidoamine Complexes
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February 2005 |
A Low-Spin d 5 Iron Imide: Nitrene Capture by Low-Coordinate Iron(I) Provides the 4-Coordinate Fe(III) Complex [PhB(CH 2 PPh 2 ) 3 ]Fe⋮N- p -tolyl
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January 2003 |
Formation of {[HIPTN 3 N]Mo(III)H} − by Heterolytic Cleavage of H 2 as Established by EPR and ENDOR Spectroscopy
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December 2009 |
Catalytic Mechanism of Heme Oxygenase through EPR and ENDOR of Cryoreduced Oxy-Heme Oxygenase and Its Asp 140 Mutants
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February 2002 |
Hydroxylation of Camphor by Reduced Oxy-Cytochrome P450cam: Mechanistic Implications of EPR and ENDOR Studies of Catalytic Intermediates in Native and Mutant Enzymes
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February 2001 |
EPR Study of the Low-Spin [d 3 ; S = 1 / 2 ], Jahn−Teller-Active, Dinitrogen Complex of a Molybdenum Trisamidoamine
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March 2007 |
Experimental and Theoretical EPR Study of Jahn−Teller-Active [HIPTN 3 N]MoL Complexes (L = N 2 , CO, NH 3 )
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April 2010 |
Protonation of the Dinitrogen-Reduction Catalyst [HIPTN 3 N]Mo III Investigated by ENDOR Spectroscopy
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January 2011 |
A Nonclassical Dihydrogen Adduct of S = 1 / 2 Fe(I)
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October 2011 |
Free H 2 Rotation vs Jahn–Teller Constraints in the Nonclassical Trigonal (TPB)Co–H 2 Complex
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October 2014 |
EPR, ENDOR, and Electronic Structure Studies of the Jahn–Teller Distortion in an Fe V Nitride
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August 2014 |
High-Valent Iron(IV)–Oxo Complexes of Heme and Non-Heme Ligands in Oxygenation Reactions
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July 2007 |