World's Best Scientists 2026 revealed!

D-Index & Metrics

Materials Science

D-Index
62
Citations
13618
World Ranking
6493
National Ranking
1648

Chemistry

D-Index
61
Citations
12752
World Ranking
9272
National Ranking
2620

Lijun Wu publication distribution in Materials Science in 2026

The chart shows the distribution of publications by all Research.com ranked scientists in the field of Materials Science in 2026. The highlighted bar marks where Lijun Wu sits on this spectrum.

50–69 publications: 28 scientists 70–89 publications: 152 scientists 90–109 publications: 356 scientists 110–129 publications: 487 scientists 130–149 publications: 723 scientists 150–169 publications: 835 scientists 170–189 publications: 850 scientists 190–209 publications: 891 scientists 210–229 publications: 862 scientists 230–249 publications: 766 scientists 250–269 publications: 726 scientists 270–289 publications: 665 scientists 290–309 publications: 593 scientists 310–329 publications: 537 scientists 330–349 publications: 477 scientists 350–369 publications: 440 scientists 370–389 publications: 356 scientists 390–409 publications: 321 scientists 410–429 publications: 256 scientists 430–449 publications: 246 scientists 450–469 publications: 216 scientists 470–489 publications: 212 scientists 490–509 publications: 174 scientists 510–529 publications: 194 scientists 530–549 publications: 162 scientists 550–569 publications: 131 scientists 570–589 publications: 111 scientists 590–609 publications: 103 scientists 610–629 publications: 99 scientists 630–649 publications: 77 scientists 650–669 publications: 92 scientists 670–689 publications: 56 scientists 690–709 publications: 53 scientists 710–729 publications: 53 scientists 730–749 publications: 38 scientists 750–769 publications: 52 scientists 770–789 publications: 43 scientists 790–809 publications: 38 scientists 810–829 publications: 34 scientists 830–849 publications: 25 scientists 850–869 publications: 18 scientists 870–889 publications: 20 scientists 890–909 publications: 24 scientists 910–929 publications: 27 scientists 930–949 publications: 20 scientists 950–969 publications: 17 scientists 970–989 publications: 10 scientists 990–1,009 publications: 16 scientists 1,010–1,029 publications: 13 scientists 1,030–1,049 publications: 12 scientists 1,050–1,069 publications: 9 scientists 1,070–1,089 publications: 8 scientists 1,090–1,109 publications: 7 scientists 1,110–1,129 publications: 9 scientists 1,130–1,149 publications: 2 scientists 1,150–1,162 publications: 5 scientists 1,163+ publications: 100 scientists
50 publications 1,163+

This scientist: 278 publications — 54th percentile

54% of scientists in this discipline score the same or lower.

The last bar groups every scientist with 1,163 publications or more.

Lijun Wu D-index placement in Materials Science in 2026

The chart shows the D-index (discipline H-index) distribution of Materials Science scientists ranked by Research.com in 2026. The highlighted bar marks where Lijun Wu sits on this spectrum.

40–41 D-Index: 211 scientists 42–43 D-Index: 450 scientists 44–45 D-Index: 612 scientists 46–47 D-Index: 612 scientists 48–49 D-Index: 598 scientists 50–51 D-Index: 657 scientists 52–53 D-Index: 667 scientists 54–55 D-Index: 621 scientists 56–57 D-Index: 597 scientists 58–59 D-Index: 610 scientists 60–61 D-Index: 587 scientists 62–63 D-Index: 606 scientists 64–65 D-Index: 533 scientists 66–67 D-Index: 490 scientists 68–69 D-Index: 469 scientists 70–71 D-Index: 378 scientists 72–73 D-Index: 421 scientists 74–75 D-Index: 359 scientists 76–77 D-Index: 323 scientists 78–79 D-Index: 299 scientists 80–81 D-Index: 230 scientists 82–83 D-Index: 210 scientists 84–85 D-Index: 195 scientists 86–87 D-Index: 203 scientists 88–89 D-Index: 175 scientists 90–91 D-Index: 175 scientists 92–93 D-Index: 142 scientists 94–95 D-Index: 121 scientists 96–97 D-Index: 117 scientists 98–99 D-Index: 107 scientists 100–101 D-Index: 88 scientists 102–103 D-Index: 85 scientists 104–105 D-Index: 68 scientists 106–107 D-Index: 62 scientists 108–109 D-Index: 57 scientists 110–111 D-Index: 45 scientists 112–113 D-Index: 49 scientists 114–115 D-Index: 50 scientists 116–117 D-Index: 34 scientists 118–119 D-Index: 38 scientists 120–121 D-Index: 37 scientists 122–123 D-Index: 29 scientists 124–125 D-Index: 28 scientists 126–127 D-Index: 24 scientists 128–129 D-Index: 33 scientists 130–131 D-Index: 28 scientists 132–133 D-Index: 21 scientists 134–135 D-Index: 20 scientists 136–137 D-Index: 23 scientists 138–139 D-Index: 17 scientists 140–141 D-Index: 12 scientists 142–143 D-Index: 17 scientists 144–145 D-Index: 21 scientists 146–147 D-Index: 13 scientists 148–149 D-Index: 11 scientists 150–151 D-Index: 14 scientists 152–153 D-Index: 13 scientists 154–155 D-Index: 9 scientists 156–157 D-Index: 10 scientists 158–159 D-Index: 7 scientists 160–161 D-Index: 4 scientists 162–163 D-Index: 4 scientists 164 D-Index: 3 scientists 165+ D-Index: 98 scientists
40 D-Index 165+

This scientist: 62 D-Index — 51st percentile

51% of scientists in this discipline score the same or lower.

The last bar groups every scientist with 165 D-Index or more.

Overview

Lijun Wu is a researcher affiliated with Brookhaven National Laboratory in the United States. Their work primarily spans the fields of Materials Science and Engineering, with significant focus on subfields such as Electrical and Electronic Engineering, Materials Chemistry, and Electronic, Optical and Magnetic Materials. Further subfield engagement includes Atomic and Molecular Physics, and Optics, as well as Surfaces, Coatings and Films.

The scientist's research topics include multiple areas related to battery technology and materials characterization. Notable themes in their scholarly work cover:

  • Advancements in Battery Materials
  • Electron and X-Ray Spectroscopy Techniques
  • Advanced Electron Microscopy Techniques and Applications
  • Advanced Battery Materials and Technologies
  • Electronic and Structural Properties of Oxides
  • Magnetic and transport properties of perovskites and related materials
  • Advanced battery technologies research

They have contributed to numerous peer-reviewed papers within prominent scientific journals. Some of their recent publications include:

  • "Kinetic pathways of ionic transport in fast-charging lithium titanate" (2020, Science)
  • "Quantitative temporally and spatially resolved X-ray fluorescence microprobe characterization of the manganese dissolution-deposition mechanism in aqueous Zn/α-MnO2 batteries" (2020, Energy & Environmental Science)
  • "Unraveling the Dissolution-Mediated Reaction Mechanism of α-MnO2 Cathodes for Aqueous Zn-Ion Batteries" (2020, Small)
  • "Direct Observation of Alternating Octahedral and Prismatic Sodium Layers in O3-Type Transition Metal Oxides" (2020, Advanced Energy Materials)
  • "Metastability and Reversibility of Anionic Redox-Based Cathode for High-Energy Rechargeable Batteries" (2020, Cell Reports Physical Science)

Lijun Wu frequently publishes in journals such as:

  • Microscopy and Microanalysis
  • Nature Communications
  • arXiv (Cornell University)
  • Physical Review B
  • Scientific Reports

The scientist collaborates regularly with several peers, including Yimei Zhu, Amy C. Marschilok, Esther S. Takeuchi, Kenneth J. Takeuchi, and C. Petrović. These partnerships suggest an interdisciplinary approach, often intersecting materials science and engineering domains.

Best Publications

  • Oxygen Reduction on Well-Defined Core-Shell Nanocatalysts: Particle Size, Facet, and Pt Shell Thickness Effects

    Jia X Wang;Hiromi Inada;Lijun Wu;Yimei Zhu

  • Gas-solid interfacial modification of oxygen activity in layered oxide cathodes for lithium-ion batteries.

    Bao Qiu;Minghao Zhang;Lijun Wu;Jun Wang

  • Combining In Situ Synchrotron X‐Ray Diffraction and Absorption Techniques with Transmission Electron Microscopy to Study the Origin of Thermal Instability in Overcharged Cathode Materials for Lithium‐Ion Batteries

    Kyung-Wan Nam;Seong-Min Bak;Seong-Min Bak;Enyuan Hu;Xiqian Yu

  • Conversion Reaction Mechanisms in Lithium Ion Batteries: Study of the Binary Metal Fluoride Electrodes

    Feng Wang;Rosa Robert;Natasha A. Chernova;Nathalie Pereira

  • Structure of chemically derived mono- and few-atomic-layer boron nitride sheets

    Wei-Qiang Han;Lijun Wu;Yimei Zhu;Kenji Watanabe

  • Oxidation state and lattice expansion of CeO 2 − x nanoparticles as a function of particle size

    Lijun Wu;H. J. Wiesmann;A. R. Moodenbaugh;R. F. Klie

  • Formation and Oxidation State of CeO2-x Nanotubes

    Wei-Qiang Han;Lijun Wu;Yimei Zhu

  • Tracking lithium transport and electrochemical reactions in nanoparticles

    Feng Wang;Hui Chia Yu;Min Hua Chen;Lijun Wu

  • Kinetic pathways of ionic transport in fast-charging lithium titanate

    Wei Zhang;Dong-Hwa Seo;Tina Chen;Tina Chen;Lijun Wu

  • In Situ Probing and Synthetic Control of Cationic Ordering in Ni-Rich Layered Oxide Cathodes

    Jianqing Zhao;Jianqing Zhao;Wei Zhang;Ashfia Huq;Scott T. Misture

  • Structural Origin of Overcharge-Induced Thermal Instability of Ni-Containing Layered-Cathodes for High-Energy-Density Lithium Batteries

    Lijun Wu;Kyung-Wan Nam;Xiaojian Wang;Yongning Zhou

  • Chemical Distribution and Bonding of Lithium in Intercalated Graphite: Identification with Optimized Electron Energy Loss Spectroscopy

    Feng Wang;Jason Graetz;M. Sergio Moreno;Chao Ma

  • Ordered bilayer ruthenium–platinum core-shell nanoparticles as carbon monoxide-tolerant fuel cell catalysts

    Yu-Chi Hsieh;Yu Zhang;Dong Su;Vyacheslav Volkov

  • Towards Long-Term Photostability of Nickel Hydroxide/BiVO4 Photoanodes for Oxygen Evolution Catalysts via In Situ Catalyst Tuning.

    Rui-Ting Gao;Dan He;Lijun Wu;Kan Hu

  • Parallel Stitching of 2D Materials.

    Xi Ling;Yuxuan Lin;Qiong Ma;Ziqiang Wang

  • Reaction mechanism for oxygen evolution on RuO2, IrO2, and RuO2@IrO2 core-shell nanocatalysts

    Zhong Ma;Yu Zhang;Shizhong Liu;Wenqian Xu

  • Superior thermoelectric performance in PbTe-PbS pseudo-binary. Extremely low thermal conductivity and modulated carrier concentration

    Di Wu;Li Dong Zhao;Li Dong Zhao;Xiao Tong;Wei Li

  • Nanoscale disorder in CaCu3Ti4O12: a new route to the enhanced dielectric response.

    Y. Zhu;J. C. Zheng;L. Wu;A. I. Frenkel

  • Polaron melting and ordering as key mechanisms for colossal resistance effects in manganites

    Ch. Jooss;L. Wu;T. Beetz;R. F. Klie

  • Defect structure of the high-dielectric-constant perovskite Ca Cu 3 Ti 4 O 12

    L. Wu;Y. Zhu;S. Park;S. Shapiro

  • Carbonophosphates: A New Family of Cathode Materials for Li-Ion Batteries Identified Computationally

    Hailong Chen;Geoffroy Hautier;Anubhav Jain;Charles Moore

  • Phonon localization in heat conduction

    M. N. Luckyanova;J. Mendoza;H. Lu;B. Song

  • Phonon Localization in Heat Conduction

    Maria Luckyanova;Jonathan Mendoza;Hong Lu;Bai Song

Frequent Co-Authors

Yimei Zhu
Yimei Zhu Brookhaven National Laboratory
Esther S. Takeuchi
Esther S. Takeuchi Stony Brook University
Amy C. Marschilok
Amy C. Marschilok Stony Brook University
Jing Tao
Jing Tao University of Science and Technology of China
Kenneth J. Takeuchi
Kenneth J. Takeuchi Stony Brook University
Jin-Cheng Zheng
Jin-Cheng Zheng Xiamen University
Masaki Suenaga
Masaki Suenaga Brookhaven National Laboratory
Gerbrand Ceder
Gerbrand Ceder University of California, Berkeley
Xiao-Qing Yang
Xiao-Qing Yang Brookhaven National Laboratory
Clare P. Grey
Clare P. Grey University of Cambridge

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