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

Hailiang Wang

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Academic

RankUnknown
As ofnot recorded
DepartmentYale Chemistry
UniversityYale
FieldChemistry
Scholarprofile

Totals

Publications74
Citations58,065
h-index95 · Scholar
Citations per year in post
Years in postno first year on the CV

Coverage

Works with a count74 of 74
Share100%

Top venues 26 venues

The 8 holding the most of these works; 18 more hold at least one.

Journal of the American Chemical Society22
Nano Research8
Nature Communications8
Nano Letters5
Angewandte Chemie International Edition3
Nature Nanotechnology3
ACS Catalysis2
Angewandte Chemie2

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 74 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
2011Co3O4 nanocrystals on graphene as a synergistic catalyst for oxygen reduction reactionNature Materialsarticle6,137
2011MoS2 nanoparticles grown on graphene: an advanced catalyst for the hydrogen evolution reactionJournal of the American Chemical Societyarticle5,663
2013An Advanced Ni–Fe Layered Double Hydroxide Electrocatalyst for Water OxidationJournal of the American Chemical Societyarticle3,120
2009N-Doping of Graphene Through Electrothermal Reactions with AmmoniaSciencearticle2,563
2011Graphene-wrapped sulfur particles as a rechargeable lithium–sulfur battery cathode material with high capacity and cycling stabilityNano Lettersarticle2,533
2010Mn3O4− graphene hybrid as a high-capacity anode material for lithium ion batteriesJournal of the American Chemical Societyarticle2,349
2011Ultrasmall reduced graphene oxide with high near-infrared absorbance for photothermal therapyJournal of the American Chemical Societyarticle2,344
2010Ni (OH) 2 nanoplates grown on graphene as advanced electrochemical pseudocapacitor materialsJournal of the American Chemical Societyarticle2,324
2009Simultaneous nitrogen doping and reduction of graphene oxideJournal of the American Chemical Societyarticle2,105
2008Room-temperature all-semiconducting sub-10-nm graphene nanoribbon field-effect transistorsPhysical Review Lettersarticle2,006
2012An oxygen reduction electrocatalyst based on carbon nanotube-graphene complexesNature Nanotechnologyarticle1,791
2012Covalent hybrid of spinel manganese–cobalt oxide and graphene as advanced oxygen reduction electrocatalystsJournal of the American Chemical Societyarticle1,552
2013Advanced zinc-air batteries based on high-performance hybrid electrocatalystsNature Communicationsarticle1,346
2019Domino electroreduction of CO 2 to methanol on a molecular catalystNaturearticle1,308
2009Solvothermal reduction of chemically exfoliated graphene sheetsJournal of the American Chemical Societyarticle1,055
2013Strongly coupled inorganic/nanocarbon hybrid materials for advanced electrocatalysisJournal of the American Chemical Societyarticle1,008
2010Facile synthesis of high-quality graphene nanoribbonsNature Nanotechnologyarticle993
2017Highly selective and active CO2 reduction electrocatalysts based on cobalt phthalocyanine/carbon nanotube hybrid structuresNature Communicationsarticle992
2013Strongly coupled inorganic–nano-carbon hybrid materials for energy storageChemical Society Reviewsarticle963
2010TiO2 nanocrystals grown on graphene as advanced photocatalytic hybrid materialsNano Researcharticle893
2012Oxygen reduction electrocatalyst based on strongly coupled cobalt oxide nanocrystals and carbon nanotubesJournal of the American Chemical Societyarticle882
2018Active sites of copper-complex catalytic materials for electrochemical carbon dioxide reductionNature Communicationsarticle802
2020Molecular engineering of dispersed nickel phthalocyanines on carbon nanotubes for selective CO 2 reductionNature Energyarticle681
2012In Operando X-ray diffraction and transmission X-ray microscopy of lithium sulfur batteriesJournal of the American Chemical Societyarticle649
2016Electrochemical CO2 Reduction to Hydrocarbons on a Heterogeneous Molecular Cu Catalyst in Aqueous SolutionJournal of the American Chemical Societyarticle629
2010High performance in vivo near-IR (> 1 μm) imaging and photothermal cancer therapy with carbon nanotubesNano Researcharticle609
2010Nanocrystal growth on graphene with various degrees of oxidationJournal of the American Chemical Societyarticle606
2016A highly active and stable hydrogen evolution catalyst based on pyrite-structured cobalt phosphosulfideNature Communicationsarticle558
2011Co1− xS–Graphene Hybrid: A High‐Performance Metal Chalcogenide Electrocatalyst for Oxygen ReductionAngewandte Chemie International Editionarticle541
2011Advanced asymmetrical supercapacitors based on graphene hybrid materialsNano Researcharticle485
2012An ultrafast nickel–iron battery from strongly coupled inorganic nanoparticle/nanocarbon hybrid materialsNature Communicationsarticle482
2012Rechargeable Li–O2 batteries with a covalently coupled MnCo2O4–graphene hybrid as an oxygen cathode catalystEnergy & Environmental Sciencearticle470
2011LiMn1− xFexPO4 Nanorods Grown on Graphene Sheets for Ultrahigh‐Rate‐Performance Lithium Ion BatteriesAngewandte Chemiearticle405
2014Ultrafast high-capacity NiZn battery with NiAlCo-layered double hydroxideEnergy & Environmental Sciencearticle359
2021Accessing Organonitrogen Compounds via C–N Coupling in Electrocatalytic CO2 ReductionJournal of the American Chemical Societyarticle354
2015Metal/Oxide Interface Nanostructures Generated by Surface Segregation for ElectrocatalysisNano Lettersarticle302
2011Plasmonic substrates for multiplexed protein microarrays with femtomolar sensitivity and broad dynamic rangeNature Communicationsarticle294
2011Controlled chlorine plasma reaction for noninvasive graphene dopingJournal of the American Chemical Societyarticle293
2015Ternary Hybrid Material for High-Performance Lithium–Sulfur BatteryJournal of the American Chemical Societyarticle290
2021Heterogeneous Molecular Catalysts of Metal Phthalocyanines for Electrochemical CO2 Reduction ReactionsAccounts of Chemical Researcharticle253
2011Graphene nanoribbons from unzipped carbon nanotubes: atomic structures, Raman spectroscopy, and electrical propertiesJournal of the American Chemical Societyarticle238
2017Electroreduction of CO2 Catalyzed by a Heterogenized Zn–Porphyrin Complex with a Redox-Innocent Metal CenterACS Central Sciencearticle227
2011Graphene nanoribbons with smooth edges behave as quantum wiresNature Nanotechnologyarticle227
2021CO2 doping of organic interlayers for perovskite solar cellsNaturearticle225
2016One-Step Synthesis of MoS2/WS2 Layered Heterostructures and Catalytic Activity of Defective Transition Metal Dichalcogenide FilmsACS Nanoarticle213
2017Phosphorus oxoanion-intercalated layered double hydroxides for high-performance oxygen evolutionNano Researcharticle209
2007Single microwire transistors of oligoarenes by direct solution processJournal of the American Chemical Societyarticle207
2017Functional metal–organic framework boosting lithium metal anode performance via chemical interactionsChemical Sciencearticle201
2017Self‐Cleaning Catalyst Electrodes for Stabilized CO2 Reduction to HydrocarbonsAngewandte Chemie International Editionarticle197
2019Integrating Rh Species with NiFe-Layered Double Hydroxide for Overall Water SplittingNano Lettersarticle195
2017Strong Metal− Phosphide Interactions in Core− Shell Geometry for Enhanced ElectrocatalysisNano Lettersarticle180
2024Active Sites of Cobalt Phthalocyanine in Electrocatalytic CO2 Reduction to MethanolAngewandte Chemiearticle161
2023Identification and Catalysis of the Potential-Limiting Step in Lithium-Sulfur BatteriesJournal of the American Chemical Societyarticle161
2018High-Performance Electrochemical CO2 Reduction Cells Based on Non-noble Metal CatalystsACS Energy Lettersarticle145
2017High-performance Li–S battery cathode with catalyst-like carbon nanotube-MoP promoting polysulfide redoxNano Researcharticle144
2012Engineering manganese oxide/nanocarbon hybrid materials for oxygen reduction electrocatalysisNano Researcharticle135
2010Metal-enhanced fluorescence of carbon nanotubesJournal of the American Chemical Societyarticle135
2018Revealing the Contribution of Individual Factors to Hydrogen Evolution Reaction Catalytic ActivityAdvanced Materialsarticle131
2020Activating Copper for Electrocatalytic CO2 Reduction to Formate via Molecular InteractionsACS Catalysisarticle129
2008Controlled synthesis of Ag2S, Ag2Se, and Ag nanofibers by using a general sacrificial template and their application in electronic device fabricationAdvanced Functional Materialsarticle129
2013Enhancing far-field thermal emission with thermal extractionNature Communicationsarticle125
2017Coupled Metal/Oxide Catalysts with Tunable Product Selectivity for Electrocatalytic CO2 ReductionACS Applied Materials & Interfacesarticle123
2019Selectivity regulation of CO2 electroreduction through contact interface engineering on superwetting Cu nanoarray electrodesNano Researcharticle116
2013Influence of Size-Induced Oxidation State of Platinum Nanoparticles on Selectivity and Activity in Catalytic Methanol Oxidation in the Gas PhaseNano Lettersarticle114
2021Electrochemical Reductive N-Methylation with CO2 Enabled by a Molecular CatalystJournal of the American Chemical Societyarticle110
2012Three-dimensional imaging of single nanotube molecule endocytosis on plasmonic substratesNature Communicationsarticle110
2011Near‐Infrared‐Fluorescence‐Enhanced Molecular Imaging of Live Cells on Gold SubstratesAngewandte Chemie International Editionarticle108
2011A New Approach to Solution‐Phase Gold Seeding for SERS SubstratesSmallarticle108
2009Chemical self-assembly of graphene sheetsNano Researcharticle106
2022Bridge sites of Au surfaces are active for electrocatalytic CO2 reductionJournal of the American Chemical Societyarticle95
2019Copper–Gold Interactions Enhancing Formate Production from Electrochemical CO2 ReductionACS Catalysisarticle94
2019Unveiling the Interfacial Effects for Enhanced Hydrogen Evolution Reaction on MoS2/WTe2 Hybrid StructuresSmallarticle94
2023Mechanism-guided realization of selective carbon monoxide electroreduction to methanolNature Synthesisarticle93
2017Ultrathin dendrimer–graphene oxide composite film for stable cycling lithium–sulfur batteriesProceedings of the National Academy of Sciencesarticle91