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

Gary Brudvig

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Academic

RankUnknown
As ofnot recorded
DepartmentYale Chemistry
UniversityYale
FieldChemistry
Scholarprofile

Totals

Publications98
Citations29,500
h-index110 · Scholar
Citations per year in post
Years in postno first year on the CV

Coverage

Works with a count98 of 98
Share100%

Top venues 33 venues

The 8 holding the most of these works; 25 more hold at least one.

Journal of the American Chemical Society19
Biochemistry17
Biochimica et Biophysica Acta (BBA) - Bioener…5
Energy & Environmental Science5
Proceedings of the National Academy of Scienc…5
Coordination Chemistry Reviews4
Angewandte Chemie3
Nature Communications3

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 98 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
2011Comparing photosynthetic and photovoltaic efficiencies and recognizing the potential for improvementSciencearticle2,160
2006Water-splitting chemistry of photosystem IIChemical Reviewsarticle1,865
2015Molecular catalysts for water oxidationChemical Reviewsarticle1,297
2018Oxidation of organic compounds in water by unactivated peroxymonosulfateEnvironmental Science & Technologyarticle917
1999A functional model for OO bond formation by the O2-evolving complex in photosystem IISciencearticle881
2018Active sites of copper-complex catalytic materials for electrochemical carbon dioxide reductionNature Communicationsarticle802
2009Highly active and robust Cp* iridium complexes for catalytic water oxidationJournal of the American Chemical Societyarticle681
2016Electrochemical CO2 Reduction to Hydrocarbons on a Heterogeneous Molecular Cu Catalyst in Aqueous SolutionJournal of the American Chemical Societyarticle629
2010Half-sandwich iridium complexes for homogeneous water-oxidation catalysisJournal of the American Chemical Societyarticle629
2010Energy conversion in natural and artificial photosynthesisChemistry & Biologyarticle615
2008Quantum mechanics/molecular mechanics study of the catalytic cycle of water splitting in photosystem IIJournal of the American Chemical Societyarticle542
2006Molecular recognition in the selective oxygenation of saturated CH bonds by a dimanganese catalystSciencearticle532
2008Functional models for the oxygen-evolving complex of photosystem IICoordination Chemistry Reviewsarticle485
2012Light-driven water oxidation for solar fuelsCoordination Chemistry Reviewsarticle428
2001Characterization of the O2-Evolving Reaction Catalyzed by [(terpy)(H2O)MnIII(O)2MnIV(OH2)(terpy)](NO3)3 (terpy = 2,2‘:6,2‘ ‘-Terpyridine)Journal of the American Chemical Societyarticle421
1989Directed alteration of the D1 polypeptide of photosystem II: evidence that tyrosine-161 is the redox component, Z, connecting the oxygen-evolving complex to th…Biochemistryarticle396
2013Artificial photosynthesis as a frontier technology for energy sustainabilityEnergy & Environmental Sciencearticle377
1988Cytochrome b-559 may function to protect photosystem II from photoinhibitionBiochemistryarticle351
2011Distinguishing homogeneous from heterogeneous catalysis in electrode-driven water oxidation with molecular iridium complexesJournal of the American Chemical Societyarticle348
2015A molecular catalyst for water oxidation that binds to metal oxide surfacesNature Communicationsarticle327
2011A visible light water-splitting cell with a photoanode formed by codeposition of a high-potential porphyrin and an iridium water-oxidation catalystEnergy & Environmental Sciencearticle325
2001Mechanism of photosynthetic water oxidation: combining biophysical studies of photosystem II with inorganic model chemistryBiochimica et Biophysica Acta (BBA) - Bioenergeticsarticle324
1998Cytochrome b559 of photosystem IIBiochimica et Biophysica Acta (BBA) - Bioenergeticsarticle318
2017Anchoring groups for photocatalytic water oxidation on metal oxide surfacesChemical Society Reviewsarticle305
1980Reactions of nitric oxide with cytochrome c oxidaseBiochemistryarticle301
1995High-valent oxomanganese clusters: structural and mechanistic work relevant to the oxygen-evolving center in photosystem IICoordination Chemistry Reviewsarticle296
2018Stable iridium dinuclear heterogeneous catalysts supported on metal-oxide substrate for solar water oxidationProceedings of the National Academy of Sciencesarticle290
1991A guide to electron paramagnetic resonance spectroscopy of photosystem II membranesBiochimica et Biophysica Acta (BBA) - Bioenergeticsarticle290
2007Water oxidation chemistry of photosystem IIPhilosophical Transactions of the Royal Society B Biologica…article289
2001Carotenoid photooxidation in photosystem IINitric Oxidearticle282
2015Facet-Dependent Photoelectrochemical Performance of TiO2 Nanostructures: An Experimental and Computational StudyJournal of the American Chemical Societyarticle276
2010Anodic deposition of a robust iridium-based water-oxidation catalyst from organometallic precursorsChemical Sciencearticle267
1986Mechanism for photosynthetic O2 evolution.Proceedings of the National Academy of Sciencesarticle264
1985Electron transfer in photosystem II at cryogenic temperaturesBiochemistryarticle257
2011S1-State Model of the O2-Evolving Complex of Photosystem IIBiochemistryarticle255
2004Structure-based mechanism of photosynthetic water oxidationPhysical Chemistry Chemical Physicsarticle247
2009Synergistic effect between anatase and rutile TiO2 nanoparticles in dye-sensitized solar cellsDalton Transactionsarticle245
2017Progress toward a molecular mechanism of water oxidation in photosystem IIAnnual Review of Physical Chemistryarticle244
2013Precursor transformation during molecular oxidation catalysis with organometallic iridium complexesJournal of the American Chemical Societyarticle244
2017The O2-Evolving Complex of Photosystem II: Recent Insights from Quantum Mechanics/Molecular Mechanics (QM/MM), Extended X-ray Absorption Fine Structure …Accounts of Chemical Researcharticle234
2017Electroreduction of CO2 Catalyzed by a Heterogenized Zn–Porphyrin Complex with a Redox-Innocent Metal CenterACS Central Sciencearticle227
2004Redox functions of carotenoids in photosynthesisBiochemistryarticle218
2015Iridium-based complexes for water oxidationDalton Transactionsarticle214
2001Quantifying the Ion Selectivity of the Ca2+ Site in Photosystem II: Evidence for Direct Involvement of Ca2+ in O2 FormationBiochemistryarticle214
1992Photooxidation of cytochrome b559 in oxygen-evolving photosystem IIBiochemistryarticle204
2017Electrocatalytic water oxidation by a copper (II) complex of an oxidation-resistant ligandACS Catalysisarticle202
2017Mechanistic Study of an Improved Ni Precatalyst for Suzuki-Miyaura Reactions of Aryl Sulfamates: Understanding the Role of Ni(I) Species.Journal of the American Chemical Societyarticle197
1986Magnetic properties of manganese in the photosynthetic O2-evolving complex. 2. Evidence for a manganese tetramerJournal of the American Chemical Societyarticle196
2008Oxygen evolution catalysis by a dimanganese complex and its relation to photosynthetic water oxidationInorganic Chemistryarticle193
1983The effect of temperature on the formation and decay of the multiline EPR signal species associated with photosynthetic oxygen evolutionBiochimica et Biophysica Acta (BBA) - Bioenergeticsarticle193
2008Computational studies of the O2-evolving complex of photosystem II and biomimetic oxomanganese complexesCoordination Chemistry Reviewsarticle191
2011Energy conversion in photosynthesis: a paradigm for solar fuel productionarticle190
2015Photosynthetic water oxidation: insights from manganese model chemistryAccounts of Chemical Researcharticle185
2008Acetylacetonate Anchors for Robust Functionalization of TiO2 Nanoparticles with Mn(II)−Terpyridine ComplexesJournal of the American Chemical Societyarticle184
2011Structural/functional role of chloride in photosystem IIBiochemistryarticle183
1996Characterization of the reductase domain of rat neuronal nitric oxide synthase generated in the methylotrophic yeast Pichia pastoris: calmodulin response is co…Journal of Biological Chemistryarticle183
1986Ammonia binds to the manganese site of the oxygen-evolving complex of photosystem II in the S2 stateJournal of the American Chemical Societyarticle181
2022Photocatalytically recovering hydrogen energy from wastewater treatment using MoS2@ TiO2 with sulfur/oxygen dual-defectarticle177
2016Heme biomolecule as redox mediator and oxygen shuttle for efficient charging of lithium-oxygen batteriesNature Communicationsarticle174
2011An Iridium(IV) Species, [Cp*Ir(NHC)Cl]+, Related to a Water-Oxidation Catalyst.Organometallicsarticle166
2006QM/MM Models of the O2-Evolving Complex of Photosystem IIJournal of Chemical Theory and Computationarticle165
1989Molecular basis of the heat denaturation of photosystem IIBiochemistryarticle164
2016Comparison of heterogenized molecular and heterogeneous oxide catalysts for photoelectrochemical water oxidationEnergy & Environmental Sciencearticle162
2024Active Sites of Cobalt Phthalocyanine in Electrocatalytic CO2 Reduction to MethanolAngewandte Chemiearticle161
2012Cytochrome b559 and cyclic electron transfer within photosystem IIBiochimica et Biophysica Acta (BBA) - Bioenergeticsarticle161
2013Plasmonic enhancement of dye-sensitized solar cells using core–shell–shell nanostructuresThe Journal of Physical Chemistry Carticle157
2011Biocompatible and pH-sensitive PLGA encapsulated MnO nanocrystals for molecular and cellular MRIACS Nanoarticle156
1997O2 evolution and permanganate formation from high-valent manganese complexesJournal of the American Chemical Societyarticle156
2005The mechanism of photosynthetic water splittingarticle154
2015Hematite‐based solar water splitting in acidic solutions: functionalization by mono‐and multilayers of iridium oxygen‐evolution catalystsAngewandte Chemiearticle153
1981Conformations of oxidized cytochrome c oxidaseBiochemistryarticle153
2004Dimer-of-Dimers Model for the Oxygen-Evolving Complex of Photosystem II. Synthesis and Properties of [MnIV4O5(terpy)4(H2O)2](ClO4)6Journal of the American Chemical Societyarticle151
1989Mechanism of photosynthetic water oxidationarticle151
2015Oxygen-evolving complex of Photosystem II: an analysis of second-shell residues and hydrogen-bonding networksCurrent Opinion in Chemical Biologyarticle150
1990Electron-transfer reactions in manganese-depleted photosystem IIBiochemistryarticle149
1979Structure of cytochrome a3-Cua3 couple in cytochrome c oxidase as revealed by nitric oxide binding studies.Proceedings of the National Academy of Sciencesarticle147
2008A model of the oxygen-evolving center of photosystem II predicted by structural refinement based on EXAFS simulationsJournal of the American Chemical Societyarticle146
2012Ultrafast photodriven intramolecular electron transfer from an iridium-based water-oxidation catalyst to perylene diimide derivativesProceedings of the National Academy of Sciencesarticle143
2001Characterization of carotenoid and chlorophyll photooxidation in photosystem IIBiochemistryarticle143
2022High-resolution cryo-electron microscopy structure of photosystem II from the mesophilic cyanobacterium, Synechocystis sp. PCC 6803Proceedings of the National Academy of Sciencesarticle139
1993Spectroscopic evidence from site-directed mutants of Synechocystis PCC6803 in favor of a close interaction between histidine 189 and redox-active tyrosine 160,…Biochemistryarticle139
2019Synthesis and Reactivity of Paramagnetic Nickel Polypyridyl Complexes Relevant to C(sp2)–C(sp3)Coupling ReactionsAngewandte Chemiearticle138
1989Manganese and calcium requirements for reconstitution of oxygen-evolution activity in manganese-depleted photosystem II membranesBiochemistryarticle135
1999A mechanistic and structural model for the formation and reactivity of a MnV═ O species in photosynthetic water oxidationJournal of the Chemical Society Dalton Transactionsarticle134
1982The nature of CuA in cytochrome c oxidase.Journal of Biological Chemistryarticle134
2015Comparison of dppf‐Supported Nickel Precatalysts for the Suzuki–Miyaura Reaction: The Observation and Activity of Nickel (I)Angewandte Chemie International Editionarticle132
2013Modular Assembly of High-Potential Zinc Porphyrin Photosensitizers Attached to TiO2 with a Series of Anchoring GroupsThe Journal of Physical Chemistry Carticle131
2013S0‑State Model of the Oxygen-Evolving Complex of Photosystem IIBiochemistryarticle130
2010Water-stable, hydroxamate anchors for functionalization of TiO2 surfaces with ultrafast interfacial electron transferEnergy & Environmental Sciencearticle129
1985Magnetic properties of manganese in the photosynthetic oxygen-evolving complexJournal of the American Chemical Societyarticle129
2014Electrochemical activation of Cp* iridium complexes for electrode-driven water-oxidation catalysisJournal of the American Chemical Societyarticle127
2007Quantum mechanics/molecular mechanics structural models of the oxygen-evolving complex of photosystem IICurrent Opinion in Structural Biologyarticle127
2015Experimental support for a single electron-transfer oxidation mechanism in firefly bioluminescenceJournal of the American Chemical Societyarticle126
2006Determination of μ-oxo exchange rates in di-μ-oxo dimanganese complexes by electrospray ionization mass spectrometryJournal of the American Chemical Societyarticle126
2021Observation of a potential-dependent switch of water-oxidation mechanism on Co-oxide-based catalystsChemarticle124
2009Hydroxamate anchors for water-stable attachment to TiO2 nanoparticlesEnergy & Environmental Sciencearticle124
2013Mutation of lysine 317 in the D2 subunit of photosystem II alters chloride binding and proton transportBiochemistryarticle123
2007Speciation of the Catalytic Oxygen Evolution System: [MnIII/IV2(μ-O)2(terpy)2(H2O)2](NO3)3 + HSO5-Inorganic Chemistryarticle123