[Ni(Et 2 PCH 2 NMeCH 2 PEt 2 ) 2 ] 2+ as a Functional Model for Hydrogenases
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January 2003 |
Hydrogen Oxidation and Production Using Nickel-Based Molecular Catalysts with Positioned Proton Relays
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January 2006 |
The roles of the first and second coordination spheres in the design of molecular catalysts for H 2 production and oxidation
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January 2009 |
Development of Molecular Electrocatalysts for Energy Storage
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February 2014 |
Molecular Electrocatalysts for Oxidation of Hydrogen Using Earth-Abundant Metals: Shoving Protons Around with Proton Relays
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June 2015 |
Designing electrochemically reversible H2 oxidation and production catalysts
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August 2018 |
Reversing the Tradeoff between Rate and Overpotential in Molecular Electrocatalysts for H 2 Production
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March 2018 |
Effect of Ligand Modification on the Mechanism of Electrocatalytic Hydrogen Production by Ni(pyridinethiolate) 3 – Derivatives
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February 2018 |
Role of the Secondary Coordination Sphere in Metal-Mediated Dioxygen Activation
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April 2010 |
Electocatalytic Water Oxidation by Cobalt(III) Hangman β-Octafluoro Corroles
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June 2011 |
Rational Design of Mononuclear Iron Porphyrins for Facile and Selective 4e – /4H + O 2 Reduction: Activation of O–O Bond by 2nd Sphere Hydrogen Bonding
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July 2018 |
Incorporation of Hydrogen-Bonding Functionalities into the Second Coordination Sphere of Iron-Based Water-Oxidation Catalysts
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April 2013 |
Electrochemical Reduction of CO2 Catalyzed by a Dinuclear Palladium Complex Containing a Bridging Hexaphosphine Ligand: Evidence for Cooperativity
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October 1995 |
Synthesis and Characterization of Water-Soluble [Pd(triphosphine)(CH3CN)](BF4)2 Complexes for CO2 Reduction
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March 1995 |
Through-Space Charge Interaction Substituent Effects in Molecular Catalysis Leading to the Design of the Most Efficient Catalyst of CO 2 -to-CO Electrochemical Conversion
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December 2016 |
A Local Proton Source Enhances CO 2 Electroreduction to CO by a Molecular Fe Catalyst
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October 2012 |
Positional effects of second-sphere amide pendants on electrochemical CO 2 reduction catalyzed by iron porphyrins
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January 2018 |
Pendant Hydrogen-Bond Donors in Cobalt Catalysts Independently Enhance CO 2 Reduction
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February 2018 |
Electrocatalytic Oxidation of Formate by [Ni(P R 2 N R′ 2 ) 2 (CH 3 CN)] 2+ Complexes
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August 2011 |
Formate oxidation via β-deprotonation in [Ni(PR2NR′2)2(CH3CN)]2+ complexes
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January 2012 |
Nickel phosphine catalysts with pendant amines for electrocatalytic oxidation of alcohols
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January 2015 |
Catalytic Oxidation of Alcohol via Nickel Phosphine Complexes with Pendant Amines
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August 2014 |
Second sphere ligand modifications enable a recyclable catalyst for oxidant-free alcohol oxidation to carboxylates
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January 2017 |
A bioinspired iron catalyst for nitrate and perchlorate reduction
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November 2016 |
Nitrite reduction by copper through ligand-mediated proton and electron transfer
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January 2015 |
The Role of Pendant Amines in the Breaking and Forming of Molecular Hydrogen Catalyzed by Nickel Complexes
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April 2012 |
The Role of the Second Coordination Sphere of [Ni(P Cy 2 N Bz 2 ) 2 ](BF 4 ) 2 in Reversible Carbon Monoxide Binding
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January 2008 |
Synthesis, Characterization, and Reactivity of Fe Complexes Containing Cyclic Diazadiphosphine Ligands: The Role of the Pendant Base in Heterolytic Cleavage of H 2
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March 2012 |
Studies of a Series of [Ni(P R 2 N Ph 2 ) 2 (CH 3 CN)] 2+ Complexes as Electrocatalysts for H 2 Production: Substituent Variation at the Phosphorus Atom of the P 2 N 2 Ligand
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November 2011 |
Production of H2 at fast rates using a nickel electrocatalyst in water–acetonitrile solutions
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January 2013 |
Incorporating Peptides in the Outer-Coordination Sphere of Bioinspired Electrocatalysts for Hydrogen Production
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May 2011 |
Investigating the Role of the Outer-Coordination Sphere in [Ni(P Ph 2 N Ph-R 2 ) 2 ] 2+ Hydrogenase Mimics
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June 2012 |
Comparison of Cobalt and Nickel Complexes with Sterically Demanding Cyclic Diphosphine Ligands: Electrocatalytic H 2 Production by [Co(P t Bu 2 N Ph 2 )(CH 3 CN) 3 ](BF 4 ) 2 †
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November 2010 |
Electrocatalytic Hydrogen Production by a Nickel Complex Containing a Tetradentate Phosphine Ligand
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October 2018 |
Conformational Dynamics and Proton Relay Positioning in Nickel Catalysts for Hydrogen Production and Oxidation
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November 2013 |
A rare terminal dinitrogen complex of chromium
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January 2011 |
Catalytic N 2 Reduction to Silylamines and Thermodynamics of N 2 Binding at Square Planar Fe
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July 2017 |
Iron Complexes Bearing Diphosphine Ligands with Positioned Pendant Amines as Electrocatalysts for the Oxidation of H 2
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May 2015 |
An iron complex with pendent amines as a molecular electrocatalyst for oxidation of hydrogen
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February 2013 |
Cobalt Complexes Containing Pendant Amines in the Second Coordination Sphere as Electrocatalysts for H 2 Production
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June 2014 |
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March 1964 |
Intermolecular Nonbonded Contact Distances in Organic Crystal Structures: Comparison with Distances Expected from van der Waals Radii
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Syntheses and Structural Characterizations of Iron(II) Complexes Containing Cyclic Diphosphine Ligands with Positioned Pendant Nitrogen Bases
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September 2007 |
NMR properties of the complexes trans-[M(.eta.2-H2)(H)(PEt2CH2CH2PEt2)2]+ (M = Fe, Ru, Os). Intramolecular exchange of atoms between .eta.2-dihydrogen and hydride ligands
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June 1987 |
Intermolecular interactions from a natural bond orbital, donor-acceptor viewpoint
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Synthesis, Structures, and Reactions of Manganese Complexes Containing Diphosphine Ligands with Pendant Amines
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October 2010 |
Metals and hydrogen bonds
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January 2003 |
Hydrogen and Dihydrogen Bonds in the Reactions of Metal Hydrides
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June 2016 |
Interaction between [(η5-C5Me5)2 OsH]+PF6− and nitrogen or oxygen bases. Hydrogen bonds of the type [OsH]+ ⋯ B
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April 1993 |
Infrared detection of M–H ⋯ OPPh 3 hydrogen bonds
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Neutral Transition Metal Hydrides as Acids in Hydrogen Bonding and Proton Transfer: Media Polarity and Specific Solvation Effects
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August 2010 |
Intermolecular Hydrogen Bonding between Neutral Transition Metal Hydrides (η 5 -C 5 H 5 )M(CO) 3 H (M = Mo, W) and Bases
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March 2006 |
Nature of hydrogen interactions with Ni(II) complexes containing cyclic phosphine ligands with pendant nitrogen bases
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March 2007 |
Two Pathways for Electrocatalytic Oxidation of Hydrogen by a Nickel Bis(diphosphine) Complex with Pendant Amines in the Second Coordination Sphere
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June 2013 |
Stabilization of Nickel Complexes with Ni 0 ···H–N Bonding Interactions Using Sterically Demanding Cyclic Diphosphine Ligands
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December 2011 |
Mechanistic Insights into Catalytic H 2 Oxidation by Ni Complexes Containing a Diphosphine Ligand with a Positioned Amine Base
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April 2009 |
Combined Spectroscopic and Electrochemical Detection of a Ni I ⋅⋅⋅HN Bonding Interaction with Relevance to Electrocatalytic H 2 Production
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June 2015 |
NMR Chemical Shifts of Trace Impurities: Common Laboratory Solvents, Organics, and Gases in Deuterated Solvents Relevant to the Organometallic Chemist
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May 2010 |
Thermodynamic Properties of the Ni−H Bond in Complexes of the Type [HNi(P 2 R N 2 R ‘ ) 2 ](BF 4 ) and Evaluation of Factors That Control Catalytic Activity for Hydrogen Oxidation/Production
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July 2007 |
Density-functional exchange-energy approximation with correct asymptotic behavior
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September 1988 |
Density-functional approximation for the correlation energy of the inhomogeneous electron gas
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June 1986 |
Mechanism of the Electrocatalytic Reduction of Protons with Diaryldithiolene Cobalt Complexes
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June 2014 |
Effect of the damping function in dispersion corrected density functional theory
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March 2011 |
Semiempirical GGA-type density functional constructed with a long-range dispersion correction
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Self‐consistent molecular orbital methods. XXIII. A polarization‐type basis set for second‐row elements
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Self—Consistent Molecular Orbital Methods. XII. Further Extensions of Gaussian—Type Basis Sets for Use in Molecular Orbital Studies of Organic Molecules
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Correlation consistent valence basis sets for use with the Stuttgart–Dresden–Bonn relativistic effective core potentials: The atoms Ga–Kr and In–Xe
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Universal Solvation Model Based on Solute Electron Density and on a Continuum Model of the Solvent Defined by the Bulk Dielectric Constant and Atomic Surface Tensions
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The Journal of Physical Chemistry B, Vol. 113, Issue 18, p. 6378-6396
https://doi.org/10.1021/jp810292n
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May 2009 |
Assessment of the Performance of DFT and DFT-D Methods for Describing Distance Dependence of Hydrogen-Bonded Interactions
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December 2010 |