World's Best Scientists 2026 revealed!

D-Index & Metrics

Chemistry

D-Index
56
Citations
8483
World Ranking
11917
National Ranking
3199

Christopher T. Williams publication distribution in Chemistry in 2026

The chart shows the distribution of publications by all Research.com ranked scientists in the field of Chemistry in 2026. The highlighted bar marks where Christopher T. Williams sits on this spectrum.

61–80 publications: 66 scientists 81–100 publications: 302 scientists 101–120 publications: 623 scientists 121–140 publications: 918 scientists 141–160 publications: 1,218 scientists 161–180 publications: 1,350 scientists 181–200 publications: 1,344 scientists 201–220 publications: 1,281 scientists 221–240 publications: 1,216 scientists 241–260 publications: 1,100 scientists 261–280 publications: 979 scientists 281–300 publications: 939 scientists 301–320 publications: 764 scientists 321–340 publications: 643 scientists 341–360 publications: 628 scientists 361–380 publications: 522 scientists 381–400 publications: 459 scientists 401–420 publications: 397 scientists 421–440 publications: 327 scientists 441–460 publications: 270 scientists 461–480 publications: 265 scientists 481–500 publications: 252 scientists 501–520 publications: 201 scientists 521–540 publications: 185 scientists 541–560 publications: 148 scientists 561–580 publications: 148 scientists 581–600 publications: 132 scientists 601–620 publications: 114 scientists 621–640 publications: 104 scientists 641–660 publications: 91 scientists 661–680 publications: 92 scientists 681–700 publications: 73 scientists 701–720 publications: 57 scientists 721–740 publications: 54 scientists 741–760 publications: 67 scientists 761–780 publications: 45 scientists 781–800 publications: 46 scientists 801–820 publications: 39 scientists 821–840 publications: 32 scientists 841–860 publications: 36 scientists 861–880 publications: 29 scientists 881–900 publications: 26 scientists 901–920 publications: 24 scientists 921–940 publications: 14 scientists 941–960 publications: 23 scientists 961–980 publications: 28 scientists 981–1,000 publications: 15 scientists 1,001–1,020 publications: 29 scientists 1,021–1,040 publications: 12 scientists 1,041–1,060 publications: 19 scientists 1,061–1,080 publications: 12 scientists 1,081–1,100 publications: 6 scientists 1,101–1,120 publications: 8 scientists 1,121–1,140 publications: 12 scientists 1,141–1,160 publications: 5 scientists 1,161–1,180 publications: 6 scientists 1,181–1,200 publications: 14 scientists 1,201–1,220 publications: 7 scientists 1,221–1,240 publications: 2 scientists 1,241–1,260 publications: 6 scientists 1,261–1,280 publications: 4 scientists 1,281–1,294 publications: 6 scientists 1,295+ publications: 100 scientists
61 publications 1,295+

This scientist: 141 publications — 11th percentile

11% of scientists in this discipline score the same or lower.

The last bar groups every scientist with 1,295 publications or more.

Christopher T. Williams D-index placement in Chemistry in 2026

The chart shows the D-index (discipline H-index) distribution of Chemistry scientists ranked by Research.com in 2026. The highlighted bar marks where Christopher T. Williams sits on this spectrum.

40–41 D-Index: 289 scientists 42–43 D-Index: 612 scientists 44–45 D-Index: 808 scientists 46–47 D-Index: 776 scientists 48–49 D-Index: 835 scientists 50–51 D-Index: 861 scientists 52–53 D-Index: 872 scientists 54–55 D-Index: 933 scientists 56–57 D-Index: 1,051 scientists 58–59 D-Index: 930 scientists 60–61 D-Index: 882 scientists 62–63 D-Index: 834 scientists 64–65 D-Index: 731 scientists 66–67 D-Index: 775 scientists 68–69 D-Index: 683 scientists 70–71 D-Index: 646 scientists 72–73 D-Index: 561 scientists 74–75 D-Index: 501 scientists 76–77 D-Index: 437 scientists 78–79 D-Index: 388 scientists 80–81 D-Index: 354 scientists 82–83 D-Index: 292 scientists 84–85 D-Index: 275 scientists 86–87 D-Index: 254 scientists 88–89 D-Index: 235 scientists 90–91 D-Index: 185 scientists 92–93 D-Index: 192 scientists 94–95 D-Index: 155 scientists 96–97 D-Index: 163 scientists 98–99 D-Index: 125 scientists 100–101 D-Index: 105 scientists 102–103 D-Index: 105 scientists 104–105 D-Index: 112 scientists 106–107 D-Index: 88 scientists 108–109 D-Index: 68 scientists 110–111 D-Index: 69 scientists 112–113 D-Index: 65 scientists 114–115 D-Index: 79 scientists 116–117 D-Index: 61 scientists 118–119 D-Index: 44 scientists 120–121 D-Index: 37 scientists 122–123 D-Index: 40 scientists 124–125 D-Index: 33 scientists 126–127 D-Index: 26 scientists 128–129 D-Index: 34 scientists 130–131 D-Index: 35 scientists 132–133 D-Index: 25 scientists 134–135 D-Index: 27 scientists 136–137 D-Index: 17 scientists 138–139 D-Index: 16 scientists 140–141 D-Index: 20 scientists 142–143 D-Index: 20 scientists 144–145 D-Index: 15 scientists 146–147 D-Index: 9 scientists 148–149 D-Index: 9 scientists 150–151 D-Index: 16 scientists 152–153 D-Index: 11 scientists 154–155 D-Index: 9 scientists 156–157 D-Index: 3 scientists 158 D-Index: 3 scientists 159+ D-Index: 98 scientists
40 D-Index 159+

This scientist: 56 D-Index — 36th percentile

36% of scientists in this discipline score the same or lower.

The last bar groups every scientist with 159 D-Index or more.

Overview

Christopher T. Williams is affiliated with the University of South Carolina in the United States. Their research primarily spans the fields of Materials Science and Engineering, with a focus on Materials Chemistry, Catalysis, and Renewable Energy, Sustainability and the Environment.

Their work covers several subfields including Mechanical Engineering and Electrical and Electronic Engineering. Key topics in their research include Catalytic Processes in Materials Science, Electrocatalysts for Energy Conversion, Catalysis and Oxidation Reactions, Catalysts for Methane Reforming, Nanomaterials for Catalytic Reactions, Catalysis for Biomass Conversion, and Mesoporous Materials and Catalysis.

Christopher T. Williams has published extensively with notable frequent publication venues such as Catalysis Science & Technology, where five of their papers have appeared. They have also published in The Journal of Physical Chemistry C, SSRN Electronic Journal, Applied Catalysis B: Environmental, and Catalysis Today.

Frequent collaborators include John R. Regalbuto, Xinbin Yu, Abolfazl Shakouri, B. Frank Gupton, and Andrea Zitolo.

  • Recent advances in the applications of mesoporous silica in heterogeneous catalysis (2022, Catalysis Science & Technology)
  • Recent applications of nickel and nickel-based bimetallic catalysts for hydrodeoxygenation of biomass-derived oxygenates to fuels (2022, Catalysis Science & Technology)
  • Multi-atom Pt and PtRu catalysts for high performance AEMFCs with ultra-low PGM content (2023, Applied Catalysis B: Environmental)
  • Hydrogenation of dimethyl oxalate to ethylene glycol over Cu/KIT-6 catalysts (2021, Catalysis Science & Technology)
  • The selective oxidation of methane to methanol using in situ generated H2O2 over palladium-based bimetallic catalysts (2023, Catalysis Science & Technology)

Best Publications

  • In situ Raman spectroscopic evidence for oxygen reduction reaction intermediates at platinum single-crystal surfaces

    Jin-Chao Dong;Xia-Guang Zhang;Valentín Briega-Martos;Xi Jin

  • Tackling CO Poisoning with Single-Atom Alloy Catalysts

    Jilei Liu;Felicia R. Lucci;Ming Yang;Sungsik Lee

  • Probing the electronic and catalytic properties of a bimetallic surface with 3 nm resolution

    Jin-Hui Zhong;Xi Jin;Lingyan Meng;Xiang Wang

  • FTIR studies of CO adsorption on Al2O3- and SiO2-supported Ru catalysts.

    Soo Yin Chin;Christopher T Williams;Michael D Amiridis

  • In Situ FTIR Spectroscopic Analysis of Carbonate Transformations during Adsorption and Desorption of CO2 in K-Promoted HTlc

    Hai Du;Christopher T. Williams;Armin D. Ebner;James A. Ritter

  • Theoretical Study of Plasmon-Enhanced Surface Catalytic Coupling Reactions of Aromatic Amines and Nitro Compounds

    Liu-Bin Zhao;Meng Zhang;Yi-Fan Huang;Christopher T. Williams

  • Selective hydrogenation of acetylene in excess ethylene using Ag- and Au–Pd/SiO2 bimetallic catalysts prepared by electroless deposition

    Yunya Zhang;Weijian Diao;Christopher T. Williams;John R. Monnier

  • Probing buried interfaces with non-linear optical spectroscopy

    Christopher T Williams;David A Beattie

  • Vibrational Band Assignments for the Chiral Modifier Cinchonidine: Implications for Surface Studies

    Wei Chu;Rene J. Leblanc;Christopher T. Williams;Jun Kubota

  • PROBING MOLECULAR VIBRATIONS AT CATALYTICALLY SIGNIFICANT INTERFACES : A NEW UBIQUITY OF SURFACE-ENHANCED RAMAN SCATTERING

    Shouzhong Zou;Christopher T. Williams;Eddy K.-Y. Chen;Michael J. Weaver

  • The selective oxidation of ethylene glycol and 1,2-propanediol on Au, Pd, and Au–Pd bimetallic catalysts

    Michael B. Griffin;Abraham A. Rodriguez;Matthew M. Montemore;John R. Monnier

  • Rational nanoparticle synthesis to determine the effects of size, support, and K dopant on Ru activity for levulinic acid hydrogenation to γ-valerolactone

    Shuo Cao;John R. Monnier;Christopher T. Williams;Weijian Diao

  • Selective Oxidation of Methane to Methanol Using Supported AuPd Catalysts Prepared by Stabilizer-Free Sol-Immobilization

    Christopher Williams;James H. Carter;Nicholas F. Dummer;Y. Kit Chow

  • Nickel–Silicon Intermetallics with Enhanced Selectivity in Hydrogenation Reactions of Cinnamaldehyde and Phenylacetylene

    Xiao Chen;Miao Li;Jingchao Guan;Xinkui Wang

  • The relationship between the structural properties of bimetallic Pd–Sn/SiO2 catalysts and their performance for selective citral hydrogenation

    Aurélie Vicente;Gwendoline Lafaye;Catherine Especel;Patrice Marécot

  • Synthesis and characterization of Au–Pd/SiO2 bimetallic catalysts prepared by electroless deposition

    Jayakiran Rebelli;Michael Detwiler;Shuguo Ma;Christopher T. Williams

  • Chemical Vapor Deposition of Pd(C3H5)(C5H5) to Synthesize Pd@MOF-5 Catalysts for Suzuki Coupling Reaction

    Mingming Zhang;Jingchao Guan;Bing Sen Zhang;Dang Sheng Su

  • AFM characterization of dendrimer-stabilized platinum nanoparticles.

    Yunlong Gu;Hong Xie;Jinxin Gao;Dongxia Liu

  • Unsupported NiMoW sulfide catalysts for hydrodesulfurization of dibenzothiophene by thermal decomposition of thiosalts

    Yanjiao Yi;Bing Sen Zhang;Xin Jin;Lei Wang

  • Low-Density Self-Assembled Monolayers on Gold Derived from Chelating 2-Monoalkylpropane-1,3-dithiols

    Young-Seok Shon;Ramon Colorado;Christopher T. Williams;Colin D. Bain

  • Thermal decomposition of generation-4 polyamidoamine dendrimer films: decomposition catalyzed by dendrimer-encapsulated Pt particles.

    O. Ozturk;T. J. Black;K. Perrine;K. Pizzolato

Frequent Co-Authors

Changhai Liang
Changhai Liang Dalian University of Technology
Xiao Chen
Xiao Chen Zhejiang University
Michael D. Amiridis
Michael D. Amiridis University of Illinois at Chicago
Michael J. Weaver
Michael J. Weaver Purdue University West Lafayette
Dang Sheng Su
Dang Sheng Su Chinese Academy of Sciences
Bingsen Zhang
Bingsen Zhang Chinese Academy of Sciences
Zhong-Qun Tian
Zhong-Qun Tian Xiamen University
John W. Weidner
John W. Weidner University of Cincinnati
Jian-Feng Li
Jian-Feng Li Xiamen University
Catherine J. Murphy
Catherine J. Murphy University of Illinois at Urbana-Champaign

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