Structural chemistry and biology of manganese metalloenzymes
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January 1997 |
The Active Sites in Manganese-Containing Metalloproteins and Inorganic Model Complexes
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September 1989 |
A Closed Conformation of Bacillus subtilis Oxalate Decarboxylase OxdC Provides Evidence for the True Identity of the Active Site
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May 2004 |
Structure of Oxalate Decarboxylase from Bacillus subtilis at 1.75 Å Resolution † , ‡
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June 2002 |
Oxalate Decarboxylase Requires Manganese and Dioxygen for Activity: OVEREXPRESSION AND CHARACTERIZATION OF
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August 2001 |
Bacillus subtilis YvrK Is an Acid-Induced Oxalate Decarboxylase
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January 2000 |
Manganese terpyridine artificial metalloenzymes for benzylic oxygenation and olefin epoxidation
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July 2014 |
Chemo- and stereoselective CH oxidations and epoxidations/cis-dihydroxylations with H2O2, catalyzed by non-heme iron and manganese complexes
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July 2012 |
Manganese Clusters with Relevance to Photosystem II
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September 2004 |
Synthesis, Structure, and Proton-Transfer Reactions of Brønsted Acidic Pyridylpyrazole Complexes of Ruthenium
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March 2011 |
Synthesis, Characterization, and Reactivity of [Ru(bpy)(CH 3 CN) 3 (NO 2 )]PF 6 , a Synthon for [Ru(bpy)(L 3 )NO 2 ] Complexes
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October 2006 |
Synthesis and Characterization of Isostructural Metalloporphyrin Chalconitrosyl Complexes Ru(TTP)(NE)Cl (E = O, S) and a Remarkable Thionitrosyl/Nitrite → Nitrosyl/Thiazate Transformation
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May 1997 |
Observations regarding the mechanisms of O-atom transfer from metal nitro ligands to oxidizable substrates
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February 1985 |
Reaction of cis-bis[1,2-bis(dimethylphosphino)ethane]dicarbonyl-chromium and -molybdenum complexes with silver(I) salts. Reduction of nitrite ion to dinitrogen oxide
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January 1979 |
Chemoselective Hydrogenation and Transfer Hydrogenation of Aldehydes Catalyzed by Iron(II) PONOP Pincer Complexes
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April 2015 |
Synthesis and characterization of iron complexes based on bis-phosphinite PONOP and bis-phosphite PONOP pincer ligands
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December 2014 |
Fe II Carbonyl Complexes Featuring Small to Bulky PNP Pincer Ligands - Facile Substitution of κ 2 P , N -Bound PNP Ligands by Carbon Monoxide: Facile Substitution of PNP Ligands by Carbon Monoxide
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September 2015 |
Heterolytic Cleavage of Dihydrogen by an Iron(II) PNP Pincer Complex via Metal–Ligand Cooperation
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July 2013 |
Kinetically Controlled Formation of Octahedral trans -Dicarbonyl Iron(II) PNP Pincer Complexes: The Decisive Role of Spin-State Changes §
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November 2010 |
Achiral and Chiral Transition Metal Complexes with Modularly Designed Tridentate PNP Pincer-Type Ligands Based on N-Heterocyclic Diamines
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April 2006 |
Base-Free Methanol Dehydrogenation Using a Pincer-Supported Iron Compound and Lewis Acid Co-catalyst
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March 2015 |
Iron catalyzed CO 2 hydrogenation to formate enhanced by Lewis acid co-catalysts
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January 2015 |
Lewis Acid-Assisted Formic Acid Dehydrogenation Using a Pincer-Supported Iron Catalyst
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July 2014 |
Synthesis and Structure of Six-Coordinate Iron Borohydride Complexes Supported by PNP Ligands
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December 2013 |
Selective Hydrogen Production from Methanol with a Defined Iron Pincer Catalyst under Mild Conditions
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December 2013 |
Iron-Based Catalysts for the Hydrogenation of Esters to Alcohols
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May 2014 |
A Molecular Iron Catalyst for the Acceptorless Dehydrogenation and Hydrogenation of N-Heterocycles
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June 2014 |
Well-Defined Iron Catalysts for the Acceptorless Reversible Dehydrogenation-Hydrogenation of Alcohols and Ketones
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October 2014 |
Mild and selective hydrogenation of aromatic and aliphatic (di)nitriles with a well-defined iron pincer complex
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June 2014 |
High-Spin Manganese(II) Complexes of an Amido/Bis(Phosphine) PNP Ligand
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May 2010 |
Ligand Reactivity in Diarylamido/Bis(Phosphine) PNP Complexes of Mn(CO) 3 and Re(CO) 3
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October 2009 |
A Pentacoordinate Mn(II) Precatalyst That Exhibits Notable Aldehyde and Ketone Hydrosilylation Turnover Frequencies
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October 2015 |
A Highly Active Manganese Precatalyst for the Hydrosilylation of Ketones and Esters
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January 2014 |
Formation of Stable trans -Dihydride Ruthenium(II) and 16-Electron Ruthenium(0) Complexes Based on Phosphinite PONOP Pincer Ligands. Reactivity toward Water and Electrophiles
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August 2009 |
A short history of SHELX
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December 2007 |
SHELXT – Integrated space-group and crystal-structure determination
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January 2015 |
OLEX2 : a complete structure solution, refinement and analysis program
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January 2009 |
ZUR KENNTNIS DER ORGANOPHOSPHORVERBINDUNGEN, XXI 1 Darstellung von Organobromphosphanen aus RPCl 2 und R 2 PCl durch Halogenaustausch
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March 1983 |
Reactions of M2(CO)9L (M = Re, Mn; L = CO, MeCN) with thioacetamide and thiobenzamide: Facile metal-mediated nitrogen–hydrogen bond activation and subsequent carbon–nitrogen or sulfur–sulfur bond formation
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August 2013 |
The crystal structure of cis-N-methylcarboxamido methylamine tetracarbonyl manganese(I), Mn(CO)4 (NH2CH3)(CONHCH3)
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January 1967 |
Mono- and Zerovalent Manganese Alkyl Complexes Supported by the α,α‘-Diiminato Pyridine Ligand: Alkyl Stabilization at the Expense of Catalytic Performance
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March 2002 |
Manganese(II) complexes containing the tridentate ligands 2,6-bis[1-(phenylimino)ethyl]pyridine, L1, or 2,6-bis[1-(4-methoxyphenylimino)ethyl]pyridine, L2. The molecular structures of five-co-ordinate [MnBr2L1] and the zinc analogue [ZnCl2L1]
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January 1990 |
Simple halogenonitrosyl anions of iron
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January 1976 |
Acid-Dependent Degradation of a [2Fe–2S] Cluster by Nitric Oxide
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September 2012 |
Synthesis and characterization of new heterometallic iron sulfur nitrosyl clusters
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October 2007 |
Charge-transfer complexes of nitric oxide, tri or tetravalent halides and aromatic hydrocarbons
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January 1988 |
Die struktur von trichloronitrosylferrat, [Fe(NO)Cl3]−
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May 1983 |
Synthesis of Bis(imidazole) Metal Complexes and Their Use in Rapid NO Detection and Quantification Devices
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November 2014 |
Chimie des complexes nitrosyles
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January 1980 |
Chimie des complexes nitrosyles
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February 1980 |
Synthesis and crystal structure of an iron nitrosyl carbonyl hydride
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March 1983 |
d8-Eisennitrosylhydride
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April 1991 |
The chemistry of transition-metal nitrosyl compounds. Part VII. The preparation and study of some cationic nitrosyl complexes of iron
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January 1972 |