World's Best Scientists 2026 revealed!
Marcos R. V. Lanza

Marcos R. V. Lanza

D-Index & Metrics

Chemistry

D-Index
50
Citations
8236
World Ranking
14468
National Ranking
112

Marcos R. V. Lanza 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 Marcos R. V. Lanza 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: 259 publications — 52nd percentile

52% of scientists in this discipline score the same or lower.

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

Marcos R. V. Lanza 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 Marcos R. V. Lanza 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: 50 D-Index — 21st percentile

21% of scientists in this discipline score the same or lower.

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

Best Publications

  • Electrochemical detection of carbamate pesticides in fruit and vegetables with a biosensor based on acetylcholinesterase immobilised on a composite of polyaniline-carbon nanotubes

    Ivana Cesarino;Fernando C. Moraes;Marcos R.V. Lanza;Sergio A.S. Machado

  • A comparative study of the electrogeneration of hydrogen peroxide using Vulcan and Printex carbon supports

    M. H. M. T. Assumpcao;R. F. B. De Souza;D. C. Rascio;J. C. M. Silva

  • Electrogeneration of hydrogen peroxide in gas diffusion electrodes modified with tert-butyl-anthraquinone on carbon black support

    Unknown

  • Electrochemical synthesis of hydrogen peroxide on oxygen-fed graphite/PTFE electrodes modified by 2-ethylanthraquinone

    Unknown

  • Oxygen reduction to hydrogen peroxide on Fe3O4 nanoparticles supported on Printex carbon and Graphene

    Willyam R.P. Barros;Willyam R.P. Barros;Qiliang Wei;Gaixia Zhang;Shuhui Sun

  • Use of Gas Diffusion Electrode for the In Situ Generation of Hydrogen Peroxide in an Electrochemical Flow-By Reactor

    Unknown

  • Electrosynthesis of hydrogen peroxide using modified gas diffusion electrodes (MGDE) for environmental applications: Quinones and azo compounds employed as redox modifiers

    Unknown

  • Low content cerium oxide nanoparticles on carbon for hydrogen peroxide electrosynthesis

    Unknown

  • Recent advances in electrochemical water technologies for the treatment of antibiotics: A short review

    Unknown

  • Electrogeneration of hydrogen peroxide in acidic medium using gas diffusion electrodes modified with cobalt (II) phthalocyanine

    Unknown

  • Evaluation of H2O2 electrogeneration and decolorization of Orange II azo dye using tungsten oxide nanoparticle-modified carbon

    Edson C. Paz;Edson C. Paz;Luci R. Aveiro;Victor S. Pinheiro;Felipe M. Souza

  • In Situ Electrochemical Generation of Hydrogen Peroxide in Alkaline Aqueous Solution by using an Unmodified Gas Diffusion Electrode

    Unknown

  • Electrochemical oxidation route of methyl paraben on a boron-doped diamond anode

    Juliana R. Steter;Robson S. Rocha;Dawany Dionísio;Marcos R.V. Lanza

  • Electrochemical and sonoelectrochemical processes applied to amaranth dye degradation.

    Juliana R. Steter;Willyam R.P. Barros;Marcos R.V. Lanza;Artur J. Motheo

  • Hydrogen peroxide electrogeneration in gas diffusion electrode nanostructured with Ta2O5

    Jussara F. Carneiro;Robson S. Rocha;Peter Hammer;R. Bertazzoli

  • Catalytic activity of Fe3−xCuxO4 (0 ≤ x ≤ 0.25) nanoparticles for the degradation of Amaranth food dye by heterogeneous electro-Fenton process

    Unknown

  • Degradation of antibiotic ciprofloxacin by different AOP systems using electrochemically generated hydrogen peroxide.

    Unknown

  • Development and application of an electrochemical sensor modified with multi-walled carbon nanotubes and graphene oxide for the sensitive and selective detection of tetracycline

    Ademar Wong;Mateus Scontri;Elsa Maria Materon;Marcos R.V. Lanza

  • Anodic oxidation of wastewater containing the Reactive Orange 16 Dye using heavily boron-doped diamond electrodes.

    Unknown

  • Oxygen reduction reaction catalyzed by ɛ-MnO2: Influence of the crystalline structure on the reaction mechanism

    R.B. Valim;M.C. Santos;M.R.V. Lanza;S.A.S. Machado

Frequent Co-Authors

Manuel A. Rodrigo
Manuel A. Rodrigo University of Castilla-La Mancha
Cristina Sáez
Cristina Sáez University of Castilla-La Mancha
Maria Del Pilar Taboada Sotomayor
Maria Del Pilar Taboada Sotomayor Sao Paulo State University
Pablo Cañizares
Pablo Cañizares University of Castilla-La Mancha
Peter Hammer
Peter Hammer Sao Paulo State University
Sergio A.S. Machado
Sergio A.S. Machado Universidade de São Paulo
Artur de Jesus Motheo
Artur de Jesus Motheo Universidade de São Paulo
Orlando Fatibello-Filho
Orlando Fatibello-Filho Federal University of São Carlos
Pedro H. C. Camargo
Pedro H. C. Camargo University of Helsinki
Lauro T. Kubota
Lauro T. Kubota State University of Campinas

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