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

Paul Chirik

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Academic

RankDistinguished
As of2011 · CV
DepartmentPrinceton Chemistry
UniversityPrinceton
FieldChemistry
Scholarprofile

Totals

Publications207
Citations28,609
h-index97 · Scholar
Citations per year in post1,144.4
Years in post25 from the CV positions

Coverage

Works with a count207 of 207
Share100%

Positions

Edwards S. Sanford Professor, Princeton Unive…2011–
Peter J. W. DeBye Professor, Cornell Universi…2009–2011
Associate Professor, Cornell University2006–2009
Assistant Professor, Cornell University2001–2006
Postdoctoral Fellow, Massachusetts Institute…2000–2001

Top venues 23 venues

The 8 holding the most of these works; 15 more hold at least one.

Journal of the American Chemical Society86
Organometallics34
Inorganic Chemistry18
ACS Catalysis17
Angewandte Chemie International Edition9
Science8
Angewandte Chemie5
Nature Chemistry4

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 207 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
2010Radical Ligands Confer Nobility on Base-Metal CatalystsSciencearticle1,104
2004Preparation and Molecular and Electronic Structures of Iron(0) Dinitrogen and Silane Complexes and Their Application to Catalytic Hydrogenation and Hydrosilati…Journal of the American Chemical Societyarticle989
2015Iron- and Cobalt-Catalyzed Alkene Hydrogenation: Catalysis with Both Redox-Active and Strong Field LigandsAccounts of Chemical Researcharticle777
2004Hydrogenation and cleavage of dinitrogen to ammonia with a zirconium complexNaturearticle696
2020Using nature’s blueprint to expand catalysis with Earth-abundant metalsSciencearticle655
2012Iron catalysts for selective anti-Markovnikov alkene hydrosilylation using tertiary silanes.Sciencearticle615
2006Electronic Structure of Bis(imino)pyridine Iron Dichloride, Monochloride, and Neutral Ligand Complexes: A Combined Structural, Spectroscopic, and Computational…Journal of the American Chemical Societyarticle590
2015Getting Down to Earth: The Renaissance of Catalysis with Abundant MetalsAccounts of Chemical Researcharticle501
2016Iron-catalyzed tritiation of pharmaceuticals.Naturearticle449
2011Preface: forum on redox-active ligandsInorganic Chemistryarticle429
2013Bis(imino)pyridine Cobalt-Catalyzed Alkene Isomerization–Hydroboration: A Strategy for Remote Hydrofunctionalization with Terminal SelectivityJournal of the American Chemical Societyarticle408
2006Iron-Catalyzed [2π + 2π] Cycloaddition of α,ω-Dienes: The Importance of Redox-Active Supporting LigandsJournal of the American Chemical Societyarticle403
2013Cobalt Precursors for High-Throughput Discovery of Base Metal Asymmetric Alkene Hydrogenation CatalystsSciencearticle389
2014Cobalt-Catalyzed C–H BorylationJournal of the American Chemical Societyarticle376
2012Enantiopure C 1 -Symmetric Bis(imino)pyridine Cobalt Complexes for Asymmetric Alkene HydrogenationJournal of the American Chemical Societyarticle368
2009Iron-Catalyzed, Hydrogen-Mediated Reductive Cyclization of 1,6-Enynes and Diynes: Evidence for Bis(imino)pyridine Ligand ParticipationJournal of the American Chemical Societyarticle315
2015Cobalt Catalyzed Z -Selective Hydroboration of Terminal Alkynes and Elucidation of the Origin of SelectivityJournal of the American Chemical Societyarticle297
2018Cobalt-catalyzed asymmetric hydrogenation of enamides enabled by single-electron reduction.Sciencearticle293
2021Green Chemistry: A Framework for a Sustainable FutureThe Journal of Organic Chemistryarticle260
2016Coordination induced bond weakening of ammonia, water, and hydrazine with a molybdenum complex.Sciencearticle259
2008Bis(imino)pyridine Iron Complexes for Aldehyde and Ketone HydrosilylationOrganic Lettersarticle243
2014Bis(imino)pyridine Cobalt-Catalyzed Dehydrogenative Silylation of Alkenes: Scope, Mechanism, and Origins of Selective Allylsilane FormationJournal of the American Chemical Societyarticle241
2015Cobalt-Catalyzed Benzylic Borylation: Enabling Polyborylation and Functionalization of Remote, Unactivated C(sp3)–H BondsJournal of the American Chemical Societyarticle240
2013Highly Selective Bis(imino)pyridine Iron-Catalyzed Alkene HydroborationOrganic Lettersarticle239
2015Iron-catalyzed intermolecular [2+2] cycloadditions of unactivated alkenes.Sciencearticle235
2012High-Activity Iron Catalysts for the Hydrogenation of Hindered, Unfunctionalized AlkenesACS Catalysisarticle232
2016Nickel-Catalyzed Asymmetric Alkene Hydrogenation of α,β-Unsaturated Esters: High-Throughput Experimentation-Enabled Reaction Discovery, Optimization, and Mecha…Journal of the American Chemical Societyarticle230
2013Catalytic Hydrogenation Activity and Electronic Structure Determination of Bis(arylimidazol-2-ylidene)pyridine Cobalt Alkyl and Hydride ComplexesJournal of the American Chemical Societyarticle229
2009Enantiopure Pyridine Bis(oxazoline) “Pybox” and Bis(oxazoline) “Box” Iron Dialkyl Complexes: Comparison to Bis(imino)pyridine Compounds and Application to Cata…Organometallicsarticle228
2008Functional Group Tolerance and Substrate Scope in Bis(imino)pyridine Iron Catalyzed Alkene HydrogenationOrganometallicsarticle228
2006Synthesis and Hydrogenation of Bis(imino)pyridine Iron ImidesJournal of the American Chemical Societyarticle228
2015Alkene Isomerization–Hydroboration Promoted by Phosphine-Ligated Cobalt CatalystsOrganic Lettersarticle222
2005Low-Valent α-Diimine Iron Complexes for Catalytic Olefin HydrogenationOrganometallicsarticle220
2010Synthesis and Molecular and Electronic Structures of Reduced Bis(imino)pyridine Cobalt Dinitrogen Complexes: Ligand versus Metal ReductionJournal of the American Chemical Societyarticle216
2016Cobalt-Catalyzed Enantioselective Hydrogenation of Minimally Functionalized Alkenes: Isotopic Labeling Provides Insight into the Origin of Stereoselectivity an…Journal of the American Chemical Societyarticle215
2009Dinitrogen cleavage and functionalization by carbon monoxide promoted by a hafnium complexNature Chemistryarticle214
2006Arene Coordination in Bis(imino)pyridine Iron Complexes: Identification of Catalyst Deactivation Pathways in Iron-Catalyzed Hydrogenation and HydrosilationOrganometallicsarticle213
2016Alkene Hydrosilylation Using Tertiary Silanes with α-Diimine Nickel Catalysts. Redox-Active Ligands Promote a Distinct Mechanistic Pathway from Platinum Cataly…ACS Catalysisarticle211
2014Four-Coordinate Cobalt Pincer Complexes: Electronic Structure Studies and Ligand Modification by Homolytic and Heterolytic PathwaysJournal of the American Chemical Societyarticle210
2006Bis(diisopropylphosphino)pyridine Iron Dicarbonyl, Dihydride, and Silyl Hydride ComplexesInorganic Chemistryarticle208
2014High-Activity Cobalt Catalysts for Alkene Hydroboration with Electronically Responsive Terpyridine and α-Diimine LigandsACS Catalysisarticle207
2010Synthesis and Electronic Structure of Cationic, Neutral, and Anionic Bis(imino)pyridine Iron Alkyl Complexes: Evaluation of Redox Activity in Single-Component…Journal of the American Chemical Societyarticle188
2010Group 4 Transition Metal Sandwich Complexes: Still Fresh after Almost 60 YearsOrganometallicsarticle184
2005Bis(imino)pyridine Iron(II) Alkyl Cations for Olefin PolymerizationJournal of the American Chemical Societyarticle183
2017Cobalt-Catalyzed 1,1-Diboration of Terminal Alkynes: Scope, Mechanism, and Synthetic ApplicationsJournal of the American Chemical Societyarticle177
2011Iron-Catalyzed Intermolecular [2π + 2π] CycloadditionJournal of the American Chemical Societyarticle176
2016Cobalt-Catalyzed C(sp2)-H Borylation: Mechanistic Insights Inspire Catalyst DesignJournal of the American Chemical Societyarticle175
2019Enabling Two-Electron Pathways with Iron and Cobalt: From Ligand Design to Catalytic ApplicationsJournal of the American Chemical Societyarticle174
2016Bench-Stable, Substrate-Activated Cobalt Carboxylate Pre-Catalysts for Alkene Hydrosilylation with Tertiary SilanesACS Catalysisarticle167
2005Square Planar vs Tetrahedral Geometry in Four Coordinate Iron(II) ComplexesInorganic Chemistryarticle167
2003Selective, Catalytic Carbon−Carbon Bond Activation and Functionalization Promoted by Late Transition Metal CatalystsJournal of the American Chemical Societyarticle167
2012Bis(imino)pyridine Iron Dinitrogen Compounds Revisited: Differences in Electronic Structure Between Four- and Five-Coordinate Derivatives.Inorganic Chemistryarticle161
2017C(sp2)–H Borylation of Fluorinated Arenes Using an Air-Stable Cobalt Precatalyst: Electronically Enhanced Site Selectivity Enables Synthetic OpportunitiesJournal of the American Chemical Societyarticle160
2012Synthesis, Electronic Structure, and Alkene Hydrosilylation Activity of Terpyridine and Bis(imino)pyridine Iron Dialkyl ComplexesOrganometallicsarticle160
2010Synthesis of Aryl-Substituted Bis(imino)pyridine Iron Dinitrogen ComplexesInorganic Chemistryarticle158
2014Bis(phosphine)cobalt Dialkyl Complexes for Directed Catalytic Alkene HydrogenationJournal of the American Chemical Societyarticle157
2019Ni(I)–X Complexes Bearing a Bulky α-Diimine Ligand: Synthesis, Structure, and Superior Catalytic Performance in the Hydrogen Isotope Exchange in PharmaceuticalsJournal of the American Chemical Societyarticle155
2013Synthesis and Electronic Structure of Bis(imino)pyridine Iron Metallacyclic Intermediates in Iron-Catalyzed Cyclization ReactionsJournal of the American Chemical Societyarticle155
2012Oxidative Addition of Carbon–Carbon Bonds with a Redox-Active Bis(imino)pyridine Iron ComplexJournal of the American Chemical Societyarticle155
2014Carbon Dioxide Hydrosilylation Promoted by Cobalt Pincer ComplexesInorganic Chemistryarticle153
2004Synthesis of a Base-Free Titanium Imido and a Transient Alkylidene from a Titanocene Dinitrogen Complex. Studies on TiNR Hydrogenation, Nitrene Group Transfer,…Organometallicsarticle152
2017Carbon–Carbon Bond Formation in a Weak Ligand Field: Leveraging Open‐Shell First‐Row Transition‐Metal CatalystsAngewandte Chemie International Editionarticle151
2010Photolysis and Thermolysis of Bis(imino)pyridine Cobalt Azides: C−H Activation from Putative Cobalt Nitrido ComplexesJournal of the American Chemical Societyarticle149
2003Synthesis, Reactivity, and Solid State Structures of Four-Coordinate Iron(II) and Manganese(II) Alkyl ComplexesOrganometallicsarticle145
2007Neutral-Ligand Complexes of Bis(imino)pyridine Iron: Synthesis, Structure, and SpectroscopyInorganic Chemistryarticle140
2012High-Selectivity Bis(imino)pyridine Iron Catalysts for the Hydrosilylation of 1,2,4-TrivinylcyclohexaneACS Catalysisarticle138
2007Amineborane dehydrogenation promoted by isolable zirconium sandwich, titanium sandwich and N2 complexesChemical Communicationsarticle132
2017Benzyltriboronates: Building Blocks for Diastereoselective Carbon–Carbon Bond FormationJournal of the American Chemical Societyarticle129
2020Cobalt-Catalyzed Asymmetric Hydrogenation of α,β-Unsaturated Carboxylic Acids by Homolytic H 2 CleavageJournal of the American Chemical Societyarticle122
2015Cobalt-Catalyzed [2π + 2π] Cycloadditions of Alkenes: Scope, Mechanism, and Elucidation of Electronic Structure of Catalytic IntermediatesJournal of the American Chemical Societyarticle121
2006Nitrogen–Carbon Bond Formation from N2 and CO2 Promoted by a Hafnocene Dinitrogen Complex Yields a Substituted HydrazineAngewandte Chemie International Editionarticle120
2003Cyclopentadienyl Substituent Effects on Reductive Elimination Reactions in Group 4 Metallocenes: Kinetics, Mechanism, and Application to Dinitrogen ActivationJournal of the American Chemical Societyarticle120
2010ReducedN-Alkyl Substituted Bis(imino)pyridine Cobalt Complexes: Molecular and Electronic Structures for Compounds Varying by Three Oxidation StatesInorganic Chemistryarticle118
2001Synthesis of Singly and Doubly Bridged ansa-Zirconocene Hydrides. Formation of an Unusual Mixed Valence Trimeric Hydride by Reaction of H2 with {(Me2Si)2(η5-C5…Organometallicsarticle118
2015Evaluation of Cobalt Complexes Bearing Tridentate Pincer Ligands for Catalytic C–H BorylationOrganometallicsarticle116
2017Cobalt-Catalyzed Stereoretentive Hydrogen Isotope Exchange of C(sp3)–H BondsACS Catalysisarticle113
2011Synthesis and Electronic Structure Determination of N-Alkyl-Substituted Bis(imino)pyridine Iron Imides Exhibiting Spin Crossover BehaviorJournal of the American Chemical Societyarticle113
2005Kinetics and Mechanism of N2 Hydrogenation in Bis(cyclopentadienyl) Zirconium Complexes and Dinitrogen Functionalization by 1,2-Addition of a Saturated C−H BondJournal of the American Chemical Societyarticle113
2018Site-Selective Nickel-Catalyzed Hydrogen Isotope Exchange in N-Heterocycles and Its Application to the Tritiation of PharmaceuticalsACS Catalysisarticle110
2009One electron at a timeNature Chemistryarticle109
2016Insight into Transmetalation Enables Cobalt-Catalyzed Suzuki–Miyaura Cross CouplingACS Central Sciencearticle108
2005Cyclopentadienyl and Olefin Substituent Effects on Insertion and β-Hydrogen Elimination with Group 4 Metallocenes. Kinetics, Mechanism, and Thermodynamics for…Organometallicsarticle108
2006Dinitrogen functionalization with bis(cyclopentadienyl) complexes of zirconium and hafniumDalton Transactionsarticle107
2004Dinitrogen Activation by Titanium Sandwich ComplexesJournal of the American Chemical Societyarticle107
2013Synthesis, electronic structure and reactivity of bis(imino)pyridine iron carbene complexes: evidence for a carbene radicalChemical Sciencearticle104
2007Iron Diazoalkane Chemistry: N−N Bond Hydrogenation and Intramolecular C−H ActivationJournal of the American Chemical Societyarticle104
2004On the Origin of Dinitrogen Hydrogenation Promoted by [(η5-C5Me4H)2Zr]2(μ2,η2,η2-N2)Journal of the American Chemical Societyarticle104
2008Carbon−Oxygen Bond Cleavage by Bis(imino)pyridine Iron Compounds: Catalyst Deactivation Pathways and Observation of Acyl C−O Bond Cleavage in EstersOrganometallicsarticle103
2018Selective [1,4]-Hydrovinylation of 1,3-Dienes with Unactivated Olefins Enabled by Iron Diimine CatalystsJournal of the American Chemical Societyarticle102
2017Ammonia Activation, H2 Evolution and Nitride Formation from a Molybdenum Complex with a Chemically and Redox Noninnocent LigandJournal of the American Chemical Societyarticle101
2016Cobalt-Catalyzed C(sp2)–H Borylation with an Air-Stable, Readily Prepared Terpyridine Cobalt(II) Bis(acetate) PrecatalystOrganometallicsarticle100
2014Oxidative addition and C–H activation chemistry with a PNP pincer-ligated cobalt complexChemical Sciencearticle99
2005N2 Hydrogenation Promoted by a Side-On Bound Hafnocene Dinitrogen ComplexOrganometallicsarticle99
2005Square planar bis(imino)pyridine iron halide and alkyl complexesChemical Communicationsarticle99
2012Oxidation and Reduction of Bis(imino)pyridine Iron Dinitrogen Complexes: Evidence for Formation of a Chelate Trianion.Inorganic Chemistryarticle97
2010Carbon Monoxide-Induced Dinitrogen Cleavage with Group 4 Metallocenes: Reaction Scope and Coupling to N−H Bond Formation and CO DeoxygenationJournal of the American Chemical Societyarticle97
2006N−C Bond Formation Promoted by a Hafnocene Dinitrogen Complex: Comparison of Zirconium and Hafnium CongenersJournal of the American Chemical Societyarticle95
2016Catalytic Proton Coupled Electron Transfer from Metal Hydrides to Titanocene Amides, Hydrazides and Imides: Determination of Thermodynamic Parameters Relevant…Journal of the American Chemical Societyarticle94
1999Preparation and Characterization of Monomeric and Dimeric Group IV Metallocene Dihydrides Having Alkyl-Substituted Cyclopentadienyl LigandsOrganometallicsarticle94
2019Regio- and Diastereoselective Iron-Catalyzed [4+4]-Cycloaddition of 1,3-DienesJournal of the American Chemical Societyarticle93
2008Bis(imino)pyridine Iron Alkyls Containing β-Hydrogens: Synthesis, Evaluation of Kinetic Stability, and Decomposition Pathways Involving Chelate ParticipationJournal of the American Chemical Societyarticle93
2016Expanding Boundaries: N2 Cleavage and Functionalization beyond Early Transition MetalsAngewandte Chemie International Editionarticle92
2019Hydrogenation of N-Heteroarenes Using Rhodium Precatalysts: Reductive Elimination Leads to Formation of Multimetallic ClustersJournal of the American Chemical Societyarticle91
2017Air-Stable α-Diimine Nickel Precatalysts for the Hydrogenation of Hindered, Unactivated AlkenesACS Catalysisarticle91
2007Synthesis of Bis(imino)pyridine Iron Di- and Monoalkyl Complexes: Stability Differences between FeCH 2 SiMe 3 and FeCH 2 CMe 3 DerivativesOrganometallicsarticle89
2004Zirconium Sandwich Complexes with η9 Indenyl Ligands: Well-Defined Precursors for Zirconocene-Mediated Coupling ReactionsJournal of the American Chemical Societyarticle89
2019Cobalt-Catalyzed Borylation of Fluorinated Arenes: Thermodynamic Control of C(sp2)-H Oxidative Addition Results in ortho-to-Fluorine SelectivityJournal of the American Chemical Societyarticle88
2011Oxidation and Reduction of Bis(imino)pyridine Iron Dicarbonyl ComplexesInorganic Chemistryarticle88
2008Reduction Chemistry of Aryl- and Alkyl-Substituted Bis(imino)pyridine Iron Dihalide Compounds: Molecular and Electronic Structures of [(PDI) 2 Fe] DerivativesInorganic Chemistryarticle87
2005Dinitrogen Functionalization with Terminal Alkynes, Amines, and Hydrazines Promoted by [(η5-C5Me4H)2Zr]2(μ2,η2,η2-N2): Observation of Side-On and End-On Diazen…Journal of the American Chemical Societyarticle87
2021Iron catalyzed synthesis and chemical recycling of telechelic 1,3-enchained oligocyclobutanes.Nature Chemistryarticle86
2011Synthesis, Electronic Structure, and Ethylene Polymerization Activity of Bis(imino)pyridine Cobalt Alkyl CationsAngewandte Chemie International Editionarticle86
2012Electronic Effects in 4-Substituted Bis(imino)pyridines and the Corresponding Reduced Iron CompoundsOrganometallicsarticle85
2015Ammonia Synthesis by Hydrogenolysis of Titanium–Nitrogen Bonds Using Proton Coupled Electron TransferJournal of the American Chemical Societyarticle84
2008Carboxylation of an ansa-Zirconocene Dinitrogen Complex: Regiospecific Hydrazine Synthesis from N2 and CO2Journal of the American Chemical Societyarticle83
2008Indenyl Zirconium Dinitrogen Chemistry: N2 Coordination to an Isolated Zirconium Sandwich and Synthesis of Side-on, End-on Dinitrogen CompoundsJournal of the American Chemical Societyarticle83
2020A Boron Activating Effect Enables Cobalt-Catalyzed Asymmetric Hydrogenation of Sterically Hindered AlkenesJournal of the American Chemical Societyarticle82
2003Synthesis of a Zirconium Sandwich Complex and Crystallographic Characterization of Its Adduct with TetrahydrofuranJournal of the American Chemical Societyarticle81
2019N–H Bond Formation in a Manganese(V) Nitride Yields Ammonia by Light-Driven Proton-Coupled Electron TransferJournal of the American Chemical Societyarticle80
2017Mechanistic Studies of Cobalt-Catalyzed C(sp2)–H Borylation of Five-Membered Heteroarenes with PinacolboraneACS Catalysisarticle79
2023Collaboration as a Key to Advance Capabilities for Earth-Abundant Metal CatalysisOrganic Process Research & Developmentarticle78
2011Synthesis, Electronic Structure, and Catalytic Activity of Reduced Bis(aldimino)pyridine Iron Compounds: Experimental Evidence for Ligand ParticipationInorganic Chemistryarticle78
2005Bis(imino)pyridine Ligand Deprotonation Promoted by a Transient Iron AmideInorganic Chemistryarticle78
1999Alkyl Rearrangement Processes in Organozirconium Complexes. Observation of Internal Alkyl Complexes during HydrozirconationJournal of the American Chemical Societyarticle78
2013Synthesis of a Base-Free Hafnium Nitride from N2 Cleavage: A Versatile Platform for Dinitrogen FunctionalizationJournal of the American Chemical Societyarticle77
2013Reversible Carbon–Carbon Bond Formation Induced by Oxidation and Reduction at a Redox-Active Cobalt ComplexInorganic Chemistryarticle77
2007Bis(cyclopentadienyl) Titanium Dinitrogen Chemistry: Synthesis and Characterization of a Side-on Bound HaptomerOrganometallicsarticle77
2014Synthesis and Ligand Modification Chemistry of a Molybdenum Dinitrogen Complex: Redox and Chemical Activity of a Bis(imino)pyridine LigandAngewandte Chemie International Editionarticle76
2020Ketone Synthesis from Benzyldiboronates and Esters: Leveraging α-Boryl Carbanions for Carbon–Carbon Bond FormationJournal of the American Chemical Societyarticle75
2016An Editorial About Elemental AnalysisOrganometallicsarticle75
2011Dinitrogen Silylation and Cleavage with a Hafnocene ComplexJournal of the American Chemical Societyarticle74
2008N2 Hydrogenation from Activated End-On Bis(indenyl) Zirconium Dinitrogen ComplexesJournal of the American Chemical Societyarticle74
2019[4 + 4]-cycloaddition of isoprene for the production of high-performance bio-based jet fuelGreen Chemistryarticle72
2019Syntheses and Catalytic Hydrogenation Performance of Cationic Bis(phosphine) Cobalt(I) Diene and Arene CompoundsAngewandte Chemiearticle71
2006Carbon−Oxygen Bond Cleavage with η9,η5-Bis(indenyl)zirconium Sandwich ComplexesJournal of the American Chemical Societyarticle70
2019Remote, Diastereoselective Cobalt-Catalyzed Alkene Isomerization–Hydroboration: Access to Stereodefined 1,3-Difunctionalized IndanesACS Catalysisarticle66
2012Azo NN Bond Cleavage with a Redox‐Active Vanadium Compound Involving Metal–Ligand CooperativityAngewandte Chemie International Editionarticle66
2008N−N Bond Cleavage in Diazoalkanes by a Bis(imino)pyridine Iron ComplexJournal of the American Chemical Societyarticle66
2014Synthesis and Hydrogenation Activity of Iron Dialkyl Complexes with Chiral Bidentate PhosphinesOrganometallicsarticle65
2022Molybdenum-catalyzed asymmetric hydrogenation of fused arenes and heteroarenes.Journal of the American Chemical Societyarticle63
2021Visible light enables catalytic formation of weak chemical bonds with molecular hydrogen.Nature Chemistryarticle62
2018Pyridine(diimine) Molybdenum-Catalyzed Hydrogenation of Arenes and Hindered Olefins: Insights into Precatalyst Activation and Deactivation PathwaysACS Catalysisarticle62
2014N–N Bond Cleavage of 1,2-Diarylhydrazines and N–H Bond Formation via H-Atom Transfer in Vanadium Complexes Supported by a Redox-Active LigandJournal of the American Chemical Societyarticle61
2006Mono(dinitrogen) and Carbon Monoxide Adducts of Bis(cyclopentadienyl) Titanium SandwichesJournal of the American Chemical Societyarticle61
2004Synthesis and Characterization of Zirconium and Iron Complexes Containing Substituted Indenyl Ligands: Evaluation of Steric and Electronic ParametersOrganometallicsarticle61
2002A Convenient Method for the Synthesis of Zirconocene Hydrido Chloride, Isobutyl Hydride, and Dihydride Complexes Using tert-Butyl LithiumOrganometallicsarticle61
2020C(sp2)–H Activation with Pyridine Dicarbene Iron Dialkyl Complexes: Hydrogen Isotope Exchange of Arenes Using Benzene-d6 as a Deuterium SourceACS Catalysisarticle60
2020Cobalt-Catalyzed C(sp2)–C(sp3) Suzuki–Miyaura Cross CouplingOrganic Lettersarticle59
2016Terpyridine Molybdenum Dinitrogen Chemistry: Synthesis of Dinitrogen Complexes That Vary by Five Oxidation StatesInorganic Chemistryarticle59
2018Cobalt Pincer Complexes in Catalytic C–H Borylation: The Pincer Ligand Flips Rather Than DearomatizesACS Catalysisarticle58
2007Dihydrogen and Silane Addition to Base-Free, Monomeric Bis(cyclopentadienyl)titanium OxidesInorganic Chemistryarticle58
2022Ammonia synthesis by photocatalytic hydrogenation of a N2-derived molybdenum nitrideNature Synthesisarticle57
2018Interconversion of Molybdenum Imido and Amido Complexes by Proton‐Coupled Electron TransferAngewandte Chemiearticle56
2014Electronic Structure Determination of Pyridine N-Heterocyclic Carbene Iron Dinitrogen Complexes and Neutral Ligand DerivativesOrganometallicsarticle56
2012Studies into the Mechanism of CO-Induced N2 Cleavage Promoted by an Ansa-Hafnocene Complex and C–C Bond Formation from an Observed IntermediateJournal of the American Chemical Societyarticle56
2010Functionalization of Hafnium Oxamidide Complexes Prepared from CO-Induced N2 CleavageJournal of the American Chemical Societyarticle56
2005Ancillary Ligand Effects on C−H Bond Activation Reactions Promoted by β-Diiminate Iridium ComplexesOrganometallicsarticle56
2022Three-Component Coupling of Arenes, Ethylene, and Alkynes Catalyzed by a Cationic Bis(phosphine) Cobalt Complex: Intercepting Metallacyclopentenes for C–H Func…Journal of the American Chemical Societyarticle55
2020Investigations into the Mechanism of Inter- and Intramolecular Iron-Catalyzed [2 + 2] Cycloaddition of AlkenesJournal of the American Chemical Societyarticle55
2018Iron-Mediated Coupling of Carbon Dioxide and Ethylene: Macrocyclic Metallalactones Enable Access to Various CarboxylatesJournal of the American Chemical Societyarticle54
2012Structure and Reactivity of a Hafnocene μ‐Nitrido Prepared From Dinitrogen CleavageAngewandte Chemie International Editionarticle54
2005Experimental Evidence for γ-Agostic Assistance in β-Methyl Elimination, the Microscopic Reverse of α-Agostic Assistance in the Chain Propagation Step of Olefin…Organometallicsarticle54
2021Visible-Light-Enhanced Cobalt-Catalyzed Hydrogenation: Switchable Catalysis Enabled by Divergence between Thermal and Photochemical PathwaysACS Catalysisarticle52
2005Ligand-Induced Haptotropic Rearrangements in Bis(indenyl)zirconium Sandwich ComplexesJournal of the American Chemical Societyarticle52
2021A Tutorial on Selectivity Determination in C(sp2)–H Oxidative Addition of Arenes by Transition Metal ComplexesOrganometallicsarticle51
2023Kinetic and thermodynamic control of C(sp2)–H activation enable site-selective borylation.Sciencearticle49
2022Development of Cobalt Catalysts for the meta-Selective C(sp2)–H Borylation of Fluorinated ArenesJournal of the American Chemical Societyarticle49
2011Synthesis and Electronic Structure of Reduced Bis(imino)pyridine Manganese CompoundsEuropean Journal of Inorganic Chemistryarticle49
2012Side-on Dinitrogen Complexes of Titanocenes with Disubstituted Cyclopentadienyl Ligands: Synthesis, Structure, and Spectroscopic CharacterizationOrganometallicsarticle48
2002Preparation of ansa-Niobocene and ansa-Tantalocene Olefin Hydride Complexes as Transition State Analogues in Metallocene-Catalyzed Olefin PolymerizationOrganometallicsarticle48
2007Diazene Dehydrogenation Follows H2 Addition to Coordinated Dinitrogen in an ansa-Zirconocene ComplexInorganic Chemistryarticle47
2009Dinitrogen Complexes of Bis(cyclopentadienyl) Titanium Derivatives: Structural Diversity Arising from Substituent ManipulationOrganometallicsarticle46
2009Addition of Methyl Triflate to a Hafnocene Dinitrogen Complex: Stepwise N2 Methylation and Conversion to a Hafnocene Hydrazonato CompoundJournal of the American Chemical Societyarticle46
2021Synthesis, Electronic Structure, and Reactivity of a Planar Four‐Coordinate, Cobalt–Imido ComplexAngewandte Chemiearticle45
2009Synthesis of Bis(imino)pyridine Iron Amide and Ammonia Compounds from an N−H Transfer AgentInorganic Chemistryarticle45
2005The importance of cyclopentadienyl substituent effects in group 4 metallocene dinitrogen chemistryCanadian Journal of Chemistryarticle45
2018Dinitrogen Coupling to a Terpyridine-Molybdenum Chromophore Is Switched on by Fermi ResonanceChemarticle44
2022Alcohol Synthesis by Cobalt-Catalyzed Visible-Light-Driven Reductive HydroformylationJournal of the American Chemical Societyarticle43
2020C(sp2)–H Borylation of Heterocycles by Well-Defined Bis(silylene)pyridine Cobalt(III) Precatalysts: Pincer Modification, C(sp2)–H Activation, and Catalytically…Organometallicsarticle43
2007C−O and C−S Bond Cleavage in Chelating Diethers and Thioethers Promoted by η9,η5-Bis(indenyl)zirconium Sandwich Complexes: A Combined Experimental and Computat…Organometallicsarticle43
2022Mechanistic Investigations of the Asymmetric Hydrogenation of Enamides with Neutral Bis(phosphine) Cobalt PrecatalystsJournal of the American Chemical Societyarticle40
2019Oxidative Addition of Dihydrogen, Boron Compounds, and Aryl Halides to a Cobalt(I) Cation Supported by a Strong-Field Pincer LigandOrganometallicsarticle39
2022Cobalt-Catalyzed C(sp2)–C(sp3) Suzuki–Miyaura Cross-Coupling Enabled by Well-Defined Precatalysts with L,X-Type LigandsACS Catalysisarticle38
2020Catalytic Hydrogenation of a Manganese(V) Nitride to AmmoniaJournal of the American Chemical Societyarticle37
2017Synthesis of Iron Hydride Complexes Relevant to Hydrogen Isotope Exchange in PharmaceuticalsOrganometallicsarticle37
2018Cobalt-catalysed alkene hydrogenation: a metallacycle can explain the hydroxyl activating effect and the diastereoselectivityChemical Sciencearticle36
2014Photochemically Induced Reductive Elimination as a Route to a Zirconocene Complex with a Strongly Activated N2 LigandAngewandte Chemie International Editionarticle35
2013Activation of Dinitrogen‐Derived Hafnium Nitrides for Nucleophilic NC Bond Formation with a Terminal IsocyanateAngewandte Chemiearticle35
2004Synthesis of a β-diiminate iridium tetrahydride for arene C–H bond activationChemical Communicationsarticle35
2019Pyridine(diimine) Iron Diene Complexes Relevant to Catalytic [2+2]‐Cycloaddition ReactionsAdvanced Synthesis & Catalysisarticle34
2013Redox‐Induced N2 Hapticity Switching in Zirconocene Dinitrogen ComplexesAngewandte Chemie International Editionarticle34
2023Iron-Catalyzed C(sp 2 )–C(sp 3 ) Suzuki–Miyaura Cross-Coupling Using an Alkoxide BaseACS Catalysisarticle33
2022C(sp2)–H Activation with Bis(silylene)pyridine Cobalt(III) Complexes: Catalytic Hydrogen Isotope Exchange of Sterically Hindered C–H BondsACS Catalysisarticle33
2020Mechanistic Origins of Regioselectivity in Cobalt-Catalyzed C(sp2)-H Borylation of Benzoate Esters and Arylboronate EstersChemarticle33
2020Synthesis and Reactivity of Organometallic Intermediates Relevant to Cobalt‐Catalyzed HydroformylationAngewandte Chemiearticle32
2003Alkyl Substituent Effects on Reductive Elimination Reactions in Zirconocene Alkyl Hydride Complexes. Manipulation of the Alkyl Steric Environment Allows the Sy…Organometallicsarticle32
2023Mechanistic investigations of phenoxyimine cobalt(II)-catalyzed C(sp2)–C(sp3) Suzuki-Miyaura cross coupling.Journal of the American Chemical Societyarticle30
2024A butadiene-derived semicrystalline polyolefin with two-tiered chemical recyclability.Chemarticle26
2022C–H activation by isolable cationic bis(phosphine) cobalt(III) metallacycles.Journal of the American Chemical Societyarticle25
2024Ligand field sensitive spin acceleration in the iron-catalyzed [2+2] cycloaddition of unactivated alkenes and dienes.Journal of the American Chemical Societyarticle17
2025Photodriven ammonia synthesis from N2 and H2: Recycling of a molecular molybdenum nitride.Journal of the American Chemical Societyarticle16
2024(Phenoxyimine)nickel-catalyzed C(sp2)–C(sp3) Suzuki-Miyaura cross coupling: Evidence for a recovering radical chain mechanism.Journal of the American Chemical Societyarticle12
2025The role of boron reagents in determining the site-selectivity of pyridine(dicarbene) cobalt-catalyzed C–H borylation of fluorinated arenes.Journal of the American Chemical Societyarticle10
2024Redox-neutral, iron-mediated directed C–H activation: General principles and mechanistic insights.Journal of the American Chemical Societyarticle8
2025Alkene-activating effect in molybdenum-catalyzed asymmetric hydrogenation of arenes: Insights into activity and selectivity.Journal of the American Chemical Societyarticle4
2025Iron(III)-mediated C–H alkylation: One-electron differentiation increases activity and chemoselectivity.Journal of the American Chemical Societyarticle3
2025Phenoxyimine iron aryl and alkoxide complexes as reactive intermediates in iron-catalyzed C(sp2)–C(sp3) Suzuki-Miyaura cross coupling.Journal of the American Chemical Societyarticle1