Trackademia

Welcome to Trackademia

The idea behind Trackademia is to build on existing academic databases like Google Scholar and OpenAlex so that you can trust the data and use it for whatever you want. That comes down to two things.

More data, and more ways to use it. We aggregate publication data from every major source into a single dataset and add information pulled from faculty CVs. Then we let you slice it however you want: choose which sources to build from, write your own formulas, weight journals, adjust for department size.

More accurate, and honest about where it isn’t. We focus on a smaller set of schools so we can verify everything carefully. Faculty lists come from department websites rather than being inferred from publication records, so we know who should be in the data before we go looking. When we can’t find data on someone, we record the gap instead of dropping them. Every number comes with a coverage rate you can check against ground truth.

Everything in Trackademia is built from seven units. AI merges duplicate records across sources and tags each publication so these categories hold up:

  • Publication — citation counts, authors, journal, peer review status, and more
  • Publication group — versions of the same work combined into one entity, such as a working paper and the article it became
  • Academic
  • Department
  • University
  • Field
  • Journal

There are two modes. In Database mode you browse the underlying records and filter by any of the seven units. In Analytics mode you get graphs and comparisons, and you switch views to compare two departments, compare one department against the average of the others, or see them all at once. Tabs let you focus on a particular level of the data.

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Academic

Patrick Holland

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Academic

RankDistinguished
As of2021 · CV
DepartmentYale Chemistry
UniversityYale
FieldChemistry
Scholarprofile

Totals

Publications231
Citations23,683
h-index82 · Scholar
Citations per year in post910.9
Years in post26 from the CV positions

Coverage

Works with a count214 of 231
Share93%

Positions

Conkey P. Whitehead Professor of Chemistry, Y…2021–
Professor of Chemistry, Yale University2013–
Professor of Chemistry, University of Rochest…2010–2013
Associate Professor of Chemistry, University…2005–2010
Assistant Professor of Chemistry, University…2000–2005
National Institutes of Health Postdoctoral Fe…1997–2000
Professor of Chemistry, Yale University

Top venues 44 venues

The 8 holding the most of these works; 36 more hold at least one.

Journal of the American Chemical Society57
Inorganic Chemistry46
Organometallics15
Angewandte Chemie International Edition14
Chemical Science9
Chemical Communications7
Proceedings of the National Academy of Scienc…5
Science5

Publications per year

Works this academic published in each year, by the year each work appeared; an undated work is in no year, and a work two colleagues wrote counts for each of them. The kind, works and year filters decide which works are here at all.

Citations per year

Citations received in each year, from this academic’s verified Scholar profile, which counts every citation to everything they ever wrote: no publication filter reaches this line - not the kinds, not the works switch, not the year window on publication - and no journal weight either. It is a profile total, so it does not match the works listed below.

Publications 231 works

Every work these filters select, most cited first and the works with no count at the end: a work nobody has a figure for is unknown, never a zero to be ranked among the works that have one, and it prints an em dash. Each figure is that work’s own citations - Scholar’s count where there is one, else OpenAlex’s - and is not weighted.

YearTitleVenueKindCitations
2018Beyond fossil-fuel-driven nitrogen transformationsSciencearticle2,769
2012Robust Photogeneration of H2 in Water Using Semiconductor Nanocrystals and a Nickel CatalystSciencearticle904
2011Cobalt-Dithiolene Complexes for the Photocatalytic and Electrocatalytic Reduction of ProtonsProceedings of the National Academy of Sciencesarticle792
2011N2 Reduction and Hydrogenation to Ammonia by a Molecular Iron-Potassium ComplexSciencearticle605
2000A Novel Copper-Mediated DNA Base PairJournal of the American Chemical Societyarticle482
2017Fe-Catalyzed C-C Bond Construction from Olefins via RadicalsJournal of the American Chemical Societyarticle453
2013Recent Developments in Homogeneous Dinitrogen Reduction by Molybdenum and IronNature Chemistryarticle418
2005Synthesis and Reactivity of Low-Coordinate Iron(II) Fluoride Complexes and Their Use in the Catalytic Hydrodefluorination of FluorocarbonsJournal of the American Chemical Societyarticle398
2006Studies of Low-Coordinate Iron Dinitrogen ComplexesJournal of the American Chemical Societyarticle386
2012A Nickel-Thiolate Catalyst for the Long-Lived Photocatalytic Production of Hydrogen in a Noble-Metal-Free SystemAngewandte Chemie International Editionarticle379
2020Catalytic hydrogen atom transfer to alkenes: a roadmap for metal hydrides and radicalsChemical Sciencearticle374
2008Electronic Structure and Reactivity of Three-Coordinate Iron ComplexesAccounts of Chemical Researcharticle363
2001Stepwise Reduction of Dinitrogen Bond Order by a Low-Coordinate Iron ComplexJournal of the American Chemical Societyarticle338
2013Nickel Pyridylthiolate Complexes for the Photocatalytic Production of Hydrogen from Aqueous Solutions in Noble-Metal-Free SystemsJournal of the American Chemical Societyarticle314
2010Metal-Dioxygen and Metal-Dinitrogen Complexes: Where Are The Electrons?Dalton Transactionsarticle298
2015Nickel Complexes for Robust Light-Driven and Electrocatalytic Hydrogen Production from WaterACS Catalysisarticle290
2015Binding of dinitrogen to an iron-sulfur-carbon siteNaturearticle290
2002Electronically Unsaturated Three-Coordinate Chloride and Methyl Complexes of Iron, Cobalt, and NickelJournal of the American Chemical Societyarticle284
1999Three-Coordinate Cu(II) Complexes: Structural Models of Trigonal-Planar Type 1 Copper Protein Active SitesJournal of the American Chemical Societyarticle264
2002b-Diketiminate Ligand Backbone Structural Effects on Cu(I)/O2 Reactivity: Unique Copper-Superoxo and Bis(µ-oxo) ComplexesJournal of the American Chemical Societyarticle258
2014Z-Selective Alkene Isomerization by High-Spin Cobalt(II) ComplexesJournal of the American Chemical Societyarticle255
2015Rapid, Regioconvergent, Solvent-Free Alkene Hydrosilylation with a Cobalt CatalystJournal of the American Chemical Societyarticle243
2002Planar Three-Coordinate High-Spin Fe(II) Complexes with Large Orbital Angular Moments: Mössbauer, Electron Paramagnetic Resonance, and Electronic Structure Stu…Journal of the American Chemical Societyarticle233
2008The Reactivity Patterns of Low-Coordinate Iron Hydride ComplexesJournal of the American Chemical Societyarticle217
2015Dinitrogen Binding and Cleavage by Multinuclear Iron ComplexesAccounts of Chemical Researcharticle216
2000A Structural Model of the Type 1 Copper Protein Active Site: N2S(thiolate)S(thioether) Ligation in a Cu(II) ComplexJournal of the American Chemical Societyarticle206
2015Distinctive Reaction Pathways at Base Metals in High-Spin Organometallic CatalystsAccounts of Chemical Researcharticle202
2016Insight into the FeMoco of nitrogenase from synthetic iron complexes with sulfur, carbon, and hydride ligandsJournal of the American Chemical Societyarticle198
2015Tuning Steric and Electronic Effects in Transition-Metal b-Diketiminate ComplexesDalton Transactionsarticle198
2011The Impact of Ligand Exchange in Hydrogen Production from Cobaloxime-Containing Photocatalytic SystemsInorganic Chemistryarticle194
2011A stable molecular nickel catalyst for the homogeneous photogeneration of hydrogen from waterChemical Communicationsarticle194
2004A Sulfido-Bridged Diiron(II) Compound and Its Reactions with Nitrogenase-Relevant SubstratesJournal of the American Chemical Societyarticle194
2000Spectroscopic and Electronic Structure Studies of Blue Copper Model Complexes. 2. Comparison of 3- and 4-Coordinate Cu(II) Thiolate Complexes and Fungal LaccaseJournal of the American Chemical Societyarticle194
1999Is the Bis(µ-oxo)dicopper Core Capable of Hydroxylating an Arene?Angewandte Chemie International Editionarticle194
2000Aliphatic Hydroxylation by a Bis(µ-oxo)dicopper ComplexAngewandte Chemie International Editionarticle187
2006Coordination Number Dependence of Reactivity in an Imidoiron(III) ComplexAngewandte Chemie International Editionarticle185
2002Copper Chemistry of b-Diketiminate Ligands: Monomer/Dimer Equilibria and a New Class of Bis(µ-oxo)dicopper CompoundsInorganic Chemistryarticle178
1997Monomeric Cyclopentadienylnickel Methoxo and Amido Complexes: Synthesis, Characterization, Reactivity, and Use for Exploring the Relationship Between H-X and M…Journal of the American Chemical Societyarticle168
2003N=N Bond Cleavage by a Low-Coordinate Iron(II) Hydride ComplexJournal of the American Chemical Societyarticle164
2001Three-Coordinate Copper(II)-Phenolate ComplexesInorganic Chemistryarticle164
2004Low-Coordinate Fe(II) Amido Complexes of b-Diketiminates: Synthesis, Structure and ReactivityInorganic Chemistryarticle161
2004Reversible Beta-Hydrogen Elimination of Three-Coordinate Iron(II) Alkyl Complexes: Mechanistic and Thermodynamic StudiesOrganometallicsarticle156
2020The potential economic feasibility of direct electrochemical nitrogen reduction as a route to ammoniaACS Sustainable Chemistry & Engineeringarticle155
1999Dioxygen Activation by Copper Sites: Stability and Reactivity of Peroxo- and Bis(µ-oxo)dicopper CoresCoordination Chemistry Reviewsarticle154
2019Roles of Iron Complexes in Catalytic Radical Alkene Cross-Coupling: A Computational and Mechanistic StudyJournal of the American Chemical Societyarticle152
2009Cobalt-Dinitrogen Complexes With Weakened N-N BondsJournal of the American Chemical Societyarticle152
2011Selectivity and Mechanism of Hydrogen Atom Transfer by an Isolable Imidoiron(III) ComplexJournal of the American Chemical Societyarticle151
2006Binding Affinity of Alkynes and Alkenes to Low-Coordinate IronInorganic Chemistryarticle137
2000Ligand Macrocycle Structural Effects on Copper-Dioxygen ReactivityInorganic Chemistryarticle137
2020Coupling Dinitrogen and Hydrocarbons through Aryl MigrationNaturearticle135
2014Alkali Metal Control over N−N Cleavage in Iron ComplexesJournal of the American Chemical Societyarticle133
2008Reduction of CO2 to CO using Low-Coordinate Iron: Formation of a Four-Coordinate Iron Dicarbonyl Complex and a Bridging Carbonate ComplexInorganic Chemistryarticle128
2005A T-Shaped Three-Coordinate Nickel(I) Carbonyl Complex and the Geometric Preferences of Three-Coordinate d9 ComplexesInorganic Chemistryarticle128
1999Application of the E-C Approach to Understanding the Bond Energies of Late-Metal Complexes: An Alternative to pp/dp RepulsionComments on Inorganic Chemistryarticle128
1999Experimental Studies of the Interconversion of Peroxo- and Bis(µ-oxo)dicopper ComplexesInorganic Chemistryarticle127
2017Coordination chemistry insights into the role of alkali metal promoters in dinitrogen reductionCatalysis Todayarticle126
2000Resonance Raman Spectroscopy as a Probe of the Bis(µ-oxo)dicopper CoreJournal of the American Chemical Societyarticle126
2010Three-Coordinate Terminal Imidoiron(III) Complexes: Structure, Spectroscopy, and Mechanism of FormationInorganic Chemistryarticle124
2011A Masked Two-Coordinate Cobalt(I) Complex That Activates C-F BondsJournal of the American Chemical Societyarticle123
1998Adduct Formation and Single and Double Deprotonation of Cp*(PMe3)Ir(H)2 with Main Group Metal Alkyls and Aryls: Synthesis and Structure of Three Novel Ir-Al an…Journal of the American Chemical Societyarticle120
2012Reversible C-C Bond Formation Between Redox-Active Pyridine Ligands in Iron ComplexesJournal of the American Chemical Societyarticle119
2012Ligand Effects on Hydrogen Atom Transfer from Hydrocarbons to Three-Coordinate Iron ImidesInorganic Chemistryarticle118
2009Three-Coordinate and Four-Coordinate Cobalt Hydride Complexes That React with DinitrogenJournal of the American Chemical Societyarticle117
2005Mössbauer, EPR and Crystallographic Characterization of a High-Spin Fe(I) Diketiminate Complex with Orbital DegeneracyInorganic Chemistryarticle114
2003Nickel Complexes of Bulky b-Diketiminate LigandsInorganic Chemistryarticle107
2019Dinitrogen Reduction to Ammonium at Rhenium Utilizing Light and Proton-Coupled Electron TransferJournal of the American Chemical Societyarticle101
2002Three-coordinate, 12-electron organometallic complexes of iron(II) supported by a bulky b-diketiminate ligand: synthesis and insertion of CO to give square pyr…Organometallicsarticle101
2020Considering Electrocatalytic Ammonia Synthesis via Bimetallic Dinitrogen CleavageACS Catalysisarticle97
2006Mössbauer and Computational Study of an N2-Bridged Diiron Diketiminate Complex: Parallel Alignment of the Iron Spins by Direct Antiferromagnetic Exchange with…Journal of the American Chemical Societyarticle97
2008A bridging hexazene (RNNNNNNR) ligand from reductive coupling of azidesJournal of the American Chemical Societyarticle95
2014A Multi-Iron System Capable of Rapid N2 Formation and N2 CleavageJournal of the American Chemical Societyarticle94
2016A [3Fe-4S] cluster is required for tRNA thiolation in archaea and eukaryotesProceedings of the National Academy of Sciencesarticle92
2001Tuning metal coordination number by ancillary ligand steric effects: synthesis of a three-coordinate iron(II) complexChemical Communicationsarticle92
2012Low-Coordinate Cobalt Fluoride Complexes: Synthesis, Reactions, and Production from C-F Activation ReactionsOrganometallicsarticle91
2011Identification of Light Atoms within Multinuclear Metal Clusters using Valence-to-Core X-Ray Emission SpectroscopyInorganic Chemistryarticle90
2022Cobalt-Carbon Bonding in a Salen-Supported Cobalt(IV) Alkyl Complex Postulated in Oxidative MHAT CatalysisJournal of the American Chemical Societyarticle89
2009Iron(II) Complexes With Redox-Active Tetrazene (RNNNR) LigandsInorganic Chemistryarticle87
2007Mechanistic Insight into N=N Cleavage by a Low-Coordinate Iron(II) Hydride ComplexJournal of the American Chemical Societyarticle85
2013Spin Crossover during b-Hydride Elimination in High-Spin Iron(II)- and Cobalt(II)-Alkyl ComplexesOrganometallicsarticle84
2012Cooperativity Between Low-Valent Iron and Potassium Promoters in Dinitrogen FixationInorganic Chemistryarticle82
2013Experimentally Quantifying Small Molecule Bond Activation Using Valence-to-Core X-ray Emission SpectroscopyJournal of the American Chemical Societyarticle78
2016Stepwise N-H Bond Formation From N2-Derived Iron Nitride, Imide and Amide Intermediates to AmmoniaChemical Sciencearticle77
2007Borane B-C Bond Cleavage by a Low-Coordinate Iron Hydride Complex and N-N Bond Cleavage by the Hydridoborate ProductOrganometallicsarticle77
2013Mechanism of Catalytic Nitrene Transfer from Iron(I)–Isocyanide ComplexesOrganometallicsarticle76
2005Low-Coordinate Iron Complexes as Synthetic Models of NitrogenaseCanadian Journal of Chemistryarticle75
1997X-ray Crystal Structures of Cp*Ni(PEt3)X. Understanding Distortions and Trans Influences in Cyclopentadienyl ComplexesJournal of the American Chemical Societyarticle74
2021Highly Z-Selective Double Bond Transposition in Simple Alkenes and Allylarenes Through A Spin-Accelerated Allyl MechanismJournal of the American Chemical Societyarticle73
2019Planar three-coordinate iron sulfide in a synthetic [4Fe-3S] cluster with biomimetic reactivityNature Chemistryarticle73
2003Copper(I)-phenolate complexes as models of the reduced active site of galactose oxidase: synthesis, characterization, and O2 reactivityJBIC Journal of Biological Inorganic Chemistryarticle73
2017Quantitation of the THF Content in Fe[N(SiMe3)2]2·xTHFInorganic Chemistryarticle70
2014Multimetallic cooperativity in activation of dinitrogen at iron-potassium sitesChemical Sciencearticle69
2012Characterization of the Fe-H Bond in a Three-Coordinate Terminal Hydride Complex of Iron(I)Angewandte Chemie International Editionarticle68
2017Density Functional Calculations for Prediction of 57Fe Mössbauer Isomer Shifts and Quadrupole Splittings in β-Diketiminate ComplexesACS Omegaarticle66
2016The Mechanism of N-N Double Bond Cleavage by an Iron(II) Hydride ComplexJournal of the American Chemical Societyarticle65
1996Synthesis, Characterization, and Reactivity of Dimeric Amidonickel ComplexesJournal of the American Chemical Societyarticle63
2023Lewis Structures and the Bonding Classification of End-on Bridging Dinitrogen Transition Metal ComplexesJournal of the American Chemical Societyarticle62
2005A Cationic Three-Coordinate Iron(II) Complex and the Reaction of β-Diketiminate with Ethyl DiazoacetateOrganometallicsarticle62
2009Coordination of N-Methylpyrrolidone to Iron(II)Journal of Organometallic Chemistryarticle61
2018Effects of N2 Binding Mode on Iron-Based Functionalization of Dinitrogen to Form an Iron(III) Hydrazido ComplexJournal of the American Chemical Societyarticle60
2018Boron compounds tackle dinitrogenSciencearticle60
2016Alkali Metal Variation and Twisting of the FeNNFe Core in Bridging Diiron Dinitrogen ComplexesInorganic Chemistryarticle59
2019Reduction of CO2 by a Masked Two- Coordinate Cobalt(I) Complex and Characterization of a Proposed Oxodicobalt(II) IntermediateChemical Sciencearticle57
2012Isolation and Characterization of Stable Iron(I)-Sulfide ComplexesAngewandte Chemie International Editionarticle55
2013On the Sensitivity of X-ray Core Spectroscopy to Changes in Metal Ligation: A Systematic Study of High-Spin Ferrous ComplexesInorganic Chemistryarticle54
1999Ist der Bis(μ-oxo)dikupfer-Kern fähig, ein Aren zu hydroxylieren?Angewandte Chemiearticle53
2019Nitrogenase-Relevant Reactivity of a Synthetic Iron-Sulfur-Carbon SiteJournal of the American Chemical Societyarticle52
2014Synthesis, Spectroscopy and Hydrogen/Deuterium Exchange in High-Spin Iron(II) Hydride ComplexesInorganic Chemistryarticle52
2009Ligand Dependence of Binding to Three-Coordinate Fe(II) ComplexesInorganic Chemistryarticle52
2009Catalytic nitrene transfer from an imidoiron(III) complex to form carbodiimides and isocyanatesChemical Communicationsarticle52
2007Quantitative Geometric Descriptions of the Belt Iron Atoms of the Iron-Molybdenum Cofactor of Nitrogenase and Synthetic Iron(II) Model ComplexesInorganic Chemistryarticle51
2021Comment on 'Structural evidence for a dynamic metallocofactor during N2 reduction by Mo-nitrogenase'Sciencearticle50
2021Understanding Terminal versus Bridging End-on N2 Coordination in Transition Metal ComplexesJournal of the American Chemical Societyarticle50
2016Alkali-Controlled C-H Activation or N-C Bond Formation from N2-Derived Iron Nitrides and ImidesJournal of the American Chemical Societyarticle50
2005Synthesis, Structure, and Spectroscopy of an Oxodiiron(II) ComplexJournal of the American Chemical Societyarticle50
2014Geometric and redox flexibility of pyridine as a redox-active ligand that can reversibly accept one or two electronsChemical Communicationsarticle48
2013Electrogenerated polypyridyl ruthenium hydride and ligand activation for water reduction to hydrogen and acetone to iso-propanolPhysical Chemistry Chemical Physicsarticle48
2024Mechanism of Alkene Hydrofunctionalization by Oxidative Cobalt(salen) Catalyzed Hydrogen Atom TransferJournal of the American Chemical Societyarticle46
2012Azurin as a protein scaffold for a low-coordinate non-heme iron site with a small-molecule binding pocketJournal of the American Chemical Societyarticle46
2018Reversible Ligand-Centered Reduction in Low-Coordinate Iron Formazanate ComplexesChemistry - A European Journalarticle45
2009New Routes to Low-Coordinate Iron Hydride Complexes: The Binuclear Oxidative Addition of H2Journal of Organometallic Chemistryarticle45
2017Reaction: Opportunities for Sustainable CatalystsChemarticle44
2011Remote Substitution on N-Heterocyclic Carbenes Heightens the Catalytic Reactivity of Their Palladium ComplexesOrganometallicsarticle44
2017Enhancement of C-H Oxidizing Ability in Co-O2 Complexes through an Isolated Heterobimetallic Oxo IntermediateAngewandte Chemie International Editionarticle43
2009Synthesis, Properties, and Reactivity of Diketiminate-Supported Cobalt Fluoride ComplexesOrganometallicsarticle42
2007Macrocyclic Binucleating β-Diketiminate Ligands and their Lithium, Aluminum, and Zinc ComplexesOrganometallicsarticle41
2024SMART assembly of congested C(sp3)-rich architectures by iron-catalyzed conjunctive alkylationNature Catalysisarticle39
2017C-H and C-N Activation at Redox-Active Pyridine Complexes of IronAngewandte Chemie International Editionarticle39
2000Aliphatische Hydroxylierung mit einem Bis(μ-oxo)dikupfer(III)-KomplexAngewandte Chemiearticle39
2002Alkyl group isomerisation in three-coordinate iron(II) complexesChemical Communicationsarticle38
2024Fe/Thiol Cooperative HAT Olefin Hydrogenation: Mechanistic Insights that Inform Enantioselective CatalysisJournal of the American Chemical Societyarticle37
2023Well-Defined Iron Sites in Crystalline Carbon NitrideJournal of the American Chemical Societyarticle37
2008Mössbauer, EPR, and theoretical study of a high-spin, four-coordinate Fe(II) diketiminate complexInorganic Chemistryarticle37
2006Bidentate Coordination of Pyrazolate in Low-Coordinate Iron(II) and Nickel(II) ComplexesAngewandte Chemie International Editionarticle37
2015Synthesis, Characterization, and Nitrogenase-Relevant Reactions of an Iron Sulfide Complex with a Bridging HydrideJournal of the American Chemical Societyarticle36
2014Organometallics Roundtable 2013-2014Organometallicsarticle36
2012Self-Assembled Bilayers on Indium-Tin Oxide (SAB-ITO) Electrodes: A Design for Chromophore-Catalyst PhotoanodesInorganic Chemistryarticle36
2019Chemical oxidation of a coordinated PNP-pincer ligand forms unexpected Re-nitroxide complexes with reversal of nitride reactivityInorganic Chemistryarticle35
2018Selective Conversion of CO2 to Isocyanate by Low-Coordinate IronAngewandte Chemie International Editionarticle33
2017Diazoalkanes in Low-Coordinate Iron Chemistry: Bimetallic Diazoalkyl and Alkylidene Complexes of Iron(II)Inorganic Chemistryarticle33
2018Alkali Cation Effects on Redox-Active Formazanate Ligands in Iron ChemistryInorganic Chemistryarticle32
2015Oxidized and Reduced [2Fe-2S] Clusters from an Iron(I) SynthonJBIC Journal of Biological Inorganic Chemistryarticle32
1998Cyclopentadienyl and Imide Ligand Transfer From Zirconium to Iridium: Can Early-Metal Imido Compounds Be Used as Imide Transfer Reagents?Organometallicsarticle32
2020The Influences of Carbon Donor Ligands on Biomimetic Multi-Iron Complexes for N2 ReductionChemical Sciencearticle31
2019Dinitrogen Activation and Functionalization using b-Diketiminate Iron ComplexesEuropean Journal of Inorganic Chemistryarticle31
2015Spin Isomers and Ligand Isomerization in a Three-Coordinate Cobalt(I) Carbonyl ComplexJournal of the American Chemical Societyarticle31
2011All square with high-spin iron(II)Nature Chemistryarticle30
2022Facile Conversion of Ammonia to a Nitride in a Rhenium System that Cleaves DinitrogenChemical Sciencearticle29
2020Introduction: Reactivity of Nitrogen from the Ground to the AtmosphereChemical Reviewsarticle29
2025Chemical synthesis reveals pathogenic role of N-glycosylation in microtubule-associated protein tauJournal of the American Chemical Societyarticle28
2021Synthesis and Reactivity of Iron Complexes with a Biomimetic SCS Pincer LigandInorganic Chemistryarticle28
2021Electronic and Spin-State Effects on Dinitrogen Splitting to Nitrides in a Rhenium Pincer SystemInorganic Chemistryarticle28
2012New iron-sulfur clusters help hydrogenases tolerate oxygenAngewandte Chemie International Editionarticle28
2011Palladium(II) and platinum(II) bind strongly to an engineered blue copper proteinInorganic Chemistryarticle28
2024Three-Coordinate Nickel and Metal-Metal Interactions in a Heterometallic Iron-Sulfur ClusterJournal of the American Chemical Societyarticle27
2023Mechanism of Nitrogen- Carbon Bond Formation From Iron(IV) Disilylhydrazido Intermediates During N2 ReductionJournal of the American Chemical Societyarticle26
2013A Sulfide-Bridged Diiron(II) Complex with an N2H4 LigandZeitschrift für anorganische und allgemeine Chemiearticle26
2010Determination of the Active Site of Sphingomonas chlorophenolica 2,6-dichloro-p-hydroquinone dioxygenase (PcpA)JBIC Journal of Biological Inorganic Chemistryarticle26
2008ENDOR Characterization of a Synthetic Diiron Hydrazido Complex as a Model for Nitrogenase IntermediatesJournal of the American Chemical Societyarticle26
2024Opportunities for Insight into the Mechanism of Efficient CO2/CO Interconversion at a Nickel-Iron Cluster in CO DehydrogenaseChemarticle25
2015Cobalt(II) Complex of a Diazoalkane Radical AnionInorganic Chemistryarticle25
2020Mechanistic Study of Alkene Hydrosilylation Catalyzed by a β-Dialdiminate Cobalt(I) ComplexOrganometallicsarticle24
2018High-Frequency Fe-H Vibrations in a Bridging Hydride Complex Characterized by NRVS and DFTAngewandte Chemie International Editionarticle24
2019Masked Radicals: Iron Complexes of Trityl, Benzophenone, and PhenylacetyleneOrganometallicsarticle22
2018So Close, Yet Sulfur Away: Opening the Nitrogenase Cofactor Structure Creates a Binding SiteBiochemistryarticle22
2018Isolation and Characterization of a High-Spin Mixed-Valent Iron Dinitrogen ComplexChemical Communicationsarticle21
2011C–H activation by a terminal imidoiron(III) complex to form a cyclopentadienyliron(II) productInorganica Chimica Actaarticle21
2021Repurposing Metalloproteins as Mimics of Natural Metalloenzymes for Small-Molecule ActivationJournal of Inorganic Biochemistryarticle20
2009Bis(h2-pentamethylcyclopentadienyl)cobalt(II)Acta Crystallographica Section E Structure Reports Onlinearticle20
2017Protonation and electrochemical reduction of rhodium- and iridium-dinitrogen complexes in organic solutionDalton Transactionsarticle19
2014Structural and Spectroscopic Characterization of Iron(II), Cobalt(II), and Nickel(II) ortho-Dihalophenolate Complexes: Insights into Metal-Halogen Secondary Bo…Inorganic Chemistryarticle19
2012A Reduced β-Diketiminatoiron Complex with End-on and Side-on Nitriles: Strong Backbonding or Ligand Non-Innocence?European Journal of Inorganic Chemistryarticle19
2019A [2Fe-1S] Complex that Affords Access to Bimetallic and Higher Nuclearity Iron-Sulfur ClustersInorganic Chemistryarticle18
2018Iron and Cobalt Diazoalkane Complexes Supported by β-Diketiminate Ligands: A Synthetic, Spectroscopic and Computational InvestigationInorganic Chemistryarticle18
2023Intermolecular Hydroalkoxylation and Hydrocarboxylation of 2-Azadienes with High EfficiencyThe Journal of Organic Chemistryarticle17
2013Cobalt-Magnesium and Iron-Magnesium Complexes with Weakened Dinitrogen BridgesEuropean Journal of Inorganic Chemistryarticle17
2012Virtual Inorganic Pedagogical Electronic Resource Learning Objects in Organometallic ChemistryJournal of Chemical Educationarticle17
2024Electronic Structure of Three-Coordinate FeII and CoII β-Diketiminate ComplexesInorganic Chemistryarticle16
2014All-Ferrous Iron-Sulfur ClustersStructure and bondingarticle16
2013Generation of High-Spin Iron(I) in a Protein Environment Using CryoreductionInorganic Chemistryarticle15
2010Solution and Structural Characterization of Iron(II) Complexes with Ortho-Halogenated Phenolates: Insights into Potential Substrate Binding Modes in Hydroquino…Inorganic Chemistryarticle15
2009Solid State and Proton NMR Characterization of an Iron(II) Complex of a Tridentate, Facially Coordinating N,N,O Donor LigandInorganica Chimica Actaarticle15
2024Iron(IV) alkyl complexes: electronic structure contributions to Fe–C bond homolysis and migration reactions that form N–C bonds from N2Chemical Sciencearticle14
2002The Electronic Properties of a Model Active Site for Blue Copper Proteins as Probed by Stark SpectroscopyThe Journal of Physical Chemistry Barticle14
2017Synthesis and Mechanism of Formation of Hydride-Sulfide Complexes of IronInorganic Chemistryarticle13
2023Catalytic Reduction of Dinitrogen to Ammonia Using Molybdenum Porphyrin ComplexesFaraday Discussionsarticle12
2022Iron Complexes of a Proton-Responsive SCS Pincer Ligand with a Sensitive Electronic StructureInorganic Chemistryarticle12
2023Sulfur-Ligated [2Fe-2C]-Clusters as Synthetic Model Systems for NitrogenaseInorganic Chemistryarticle11
2023Dynamic effects on ligand field from rapid hydride motion in an iron(II) dimer with an S = 3 ground stateChemical Sciencearticle11
2017ENDOR Characterization of an Iron-Alkene Complex Provides Insight into a Corresponding Organometallic Intermediate of NitrogenaseChemical Sciencearticle11
2016Effects of Ligand Halogenation on the Electron Localization, Geometry and Spin State of Low-Coordinate β-Diketiminate Iron ComplexesEuropean Journal of Inorganic Chemistryarticle11
2011Two-Coordinate Transition Metal Centers With Metal-Metal BondsAngewandte Chemie International Editionarticle11
2006A Dinucleating Ligand Related to the β-DiketiminatesDalton Transactionsarticle11
2023Dinitrogen Binding and Functionalization in Low-Coordinate Alkynyliron ComplexesInorganic Chemistryarticle10
2023Valence delocalization in carbon-bridged mixed-valence iron complexesChemistry - A European Journalarticle10
2024Isocyanide Ligation Enables Electrochemical Ammonia Formation in a Synthetic Cycle for N2 FixationJournal of the American Chemical Societyarticle8
2024Bridging Carbonyl and Carbyne Complexes of Weak-Field Iron: Electronic Structure and Iron-Carbon BondingJournal of the American Chemical Societyarticle7
2024Evaluating Diazene to N2 Interconversion at Iron-Sulfur ComplexesChemistry - A European Journalarticle7
2022Spin states, bonding and magnetism in mixed valence iron(0)-iron(II) complexesChemistry - A European Journalarticle7
2019Implementation of an Accessible Gas Chromatography Laboratory Experiment for High School StudentsJournal of Chemical Educationarticle6
2025Prospects for forming C–N bonds from dinitrogenACS Catalysisarticle5
2018Incorporating Light Atoms Into Synthetic Analogues of FeMocoProceedings of the National Academy of Sciencesarticle5
2025Alkali Metal Control of Triplet-Mediated C–H Activation in Iron-Mediated Coupling of Dinitrogen and BenzeneInorganic Chemistryarticle4
2023Mössbauer and Nuclear Resonance Vibrational Spectroscopy Studies of Iron Species Involved in N-N Bond CleavageInorganic Chemistryarticle4
2023Desulfurization and N2 Binding at an Iron Complex Derived from C–S Activation of BenzothiopheneOrganometallicsarticle4
2025Bypassing the Nitrido Wall using Redox-Active Isocyanide: Nucleophilic Attack on CO by a Rhenium Nitride ComplexAngewandte Chemie International Editionarticle3
2024Inserting Three-Coordinate Nickel into [4Fe-4S] ClustersACS Central Sciencearticle3
2009A diketiminate-bound diiron complex with a bridging carbonate ligandActa Crystallographica Section C Crystal Structure Communic…article3
2025What you C is what you getProceedings of the National Academy of Sciencesarticle1
2018Functionalized Self-Assembled Monolayers Bearing Diiminate Complexes Immobilized through Covalently Anchored LigandsLangmuirarticle1
2026Alkali Metal Cation Effects for Rapid C–H Activation by Iron(0) ComplexesChemRxivarticle0
2026Hydride and Seek: Comparing Crystallographic Hydride Placement Techniques with an Open-Shell Cobalt ComplexACS Central Sciencearticle0
2025Water-Soluble Rhenium Nitride Complexes Supported by Multidentate Phosphinite Ligands Provide Insights into Aqueous Ammonium Synthesis Using Samarium DiiodideInorganic Chemistryarticle0
2023Synthesis of new chelating phosphines containing an aryl chloride groupSynthesisarticle0
2023Small, Electron-Donating Substituents Give CO2 Activation by Permethylpentalene Zirconium Amido Complexes the Upper Hand: A DFT Study of Distortion and Interac…Inorganic Chemistryarticle0
2026Alkali Metal Cation Effects on Dinitrogen Complexes and Organometallic CompoundsAccounts of Chemical Researcharticle
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