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D-Index & Metrics

Discipline name D-Index World Ranking Current World Ranking National Ranking Current National Ranking Publications Citations
Materials Science 43 12432 12022 3383 3368 153 5316

Qi-Hui Wu publications per year

The chart shows the history of publications by Qi-Hui Wu between 2008 and 2025, highlighting the no. of papers published in each year and offering an overview of the publication velocity of this scholar. Qi-Hui Wu published across 18 years, from 2008 to 2025, averaging 9.1 papers a year. Output peaked at 20 publications in 2013. 24 of the 163 publications appeared in the last two years.

No. of publications
5 10 15 20
Bar chart. Horizontal axis: year, 2008 to 2025. Vertical axis: number of publications, 0 to 20. Peak 20 publications in 2013. 2008: 1 publication 2009: 1 publication 2010: 5 publications 2011: 5 publications 2012: 7 publications 2013: 20 publications 2014: 5 publications 2015: 6 publications 2016: 8 publications 2017: 12 publications 2018: 20 publications 2019: 10 publications 2020: 16 publications 2021: 11 publications 2022: 8 publications 2023: 4 publications 2024: 11 publications 2025: 13 publications
2008 2025

163 publications in total across all disciplines

View publications per year as a table
Qi-Hui Wu: publications per year, 2008 to 2025
Year Publications
2008 1
2009 1
2010 5
2011 5
2012 7
2013 20
2014 5
2015 6
2016 8
2017 12
2018 20
2019 10
2020 16
2021 11
2022 8
2023 4
2024 11
2025 13
Total 163
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Qi-Hui 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 Qi-Hui Wu sits on this spectrum.

No. of scientists
200 400 600 800
Bar chart with 57 bars. Horizontal axis: publications, 50–69 to 1,163+. Vertical axis: number of scientists, 0 to 891. Most scientists, 891, have 190–209 publications. The last bar groups every scientist with 1,163 publications or more. The highlighted bar, 150–169 publications, is where this scientist sits. 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
50–69 publications 1,163+

This scientist: 153 publications — 15th percentile

15% of scientists in this discipline score the same or lower.

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

View publications distribution as a table
Number of Materials Science scientists by publication count, Research.com 2026 ranking edition. Based on 12,847 ranked scientists.
Publications Scientists This scientist
50–69 28
70–89 152
90–109 356
110–129 487
130–149 723
150–169 835 153
170–189 850
190–209 891
210–229 862
230–249 766
250–269 726
270–289 665
290–309 593
310–329 537
330–349 477
350–369 440
370–389 356
390–409 321
410–429 256
430–449 246
450–469 216
470–489 212
490–509 174
510–529 194
530–549 162
550–569 131
570–589 111
590–609 103
610–629 99
630–649 77
650–669 92
670–689 56
690–709 53
710–729 53
730–749 38
750–769 52
770–789 43
790–809 38
810–829 34
830–849 25
850–869 18
870–889 20
890–909 24
910–929 27
930–949 20
950–969 17
970–989 10
990–1,009 16
1,010–1,029 13
1,030–1,049 12
1,050–1,069 9
1,070–1,089 8
1,090–1,109 7
1,110–1,129 9
1,130–1,149 2
1,150–1,162 5
1,163+ 100
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Qi-Hui 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 Qi-Hui Wu sits on this spectrum.

No. of scientists
200 400 600
Bar chart with 64 bars. Horizontal axis: D-Index, 40–41 to 165+. Vertical axis: number of scientists, 0 to 667. Most scientists, 667, have 52–53 D-Index. The last bar groups every scientist with 165 D-Index or more. The highlighted bar, 42–43 D-Index, is where this scientist sits. 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
40–41 D-Index 165+

This scientist: 43 D-Index — 5th percentile

5% of scientists in this discipline score the same or lower.

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

View D-Index distribution as a table
Number of Materials Science scientists by D-index, Research.com 2026 ranking edition. Based on 12,847 ranked scientists.
D-Index Scientists This scientist
40–41 211
42–43 450 43
44–45 612
46–47 612
48–49 598
50–51 657
52–53 667
54–55 621
56–57 597
58–59 610
60–61 587
62–63 606
64–65 533
66–67 490
68–69 469
70–71 378
72–73 421
74–75 359
76–77 323
78–79 299
80–81 230
82–83 210
84–85 195
86–87 203
88–89 175
90–91 175
92–93 142
94–95 121
96–97 117
98–99 107
100–101 88
102–103 85
104–105 68
106–107 62
108–109 57
110–111 45
112–113 49
114–115 50
116–117 34
118–119 38
120–121 37
122–123 29
124–125 28
126–127 24
128–129 33
130–131 28
132–133 21
134–135 20
136–137 23
138–139 17
140–141 12
142–143 17
144–145 21
146–147 13
148–149 11
150–151 14
152–153 13
154–155 9
156–157 10
158–159 7
160–161 4
162–163 4
164 3
165+ 98
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Overview

Qi-Hui Wu is affiliated with Jimei University in China and specializes in engineering, with a significant focus on electrical and electronic engineering. Their research contributions span multiple subfields including automotive engineering, materials chemistry, electronic, optical and magnetic materials, and mechanical engineering.

The body of work by Qi-Hui Wu is centered mainly on advancements in battery materials and technologies. Research topics prominently include:

  • Advancements in Battery Materials
  • Advanced Battery Materials and Technologies
  • Advanced Battery Technologies Research
  • Supercapacitor Materials and Fabrication
  • Extraction and Separation Processes
  • Electrocatalysts for Energy Conversion

Frequent co-authors collaborating with Qi-Hui Wu include Dingrong Deng, Guifang Li, Xiaohong Fan, Jian-Chun Weng, and Yi Li, with the highest number of collaborations being with Dingrong Deng.

Their research has been published across several notable scientific journals and venues. Frequent publication venues include:

  • Electrochimica Acta
  • Molecules
  • Journal of Materials Chemistry A
  • Journal of Alloys and Compounds
  • ChemistrySelect

Selected recent papers by Qi-Hui Wu provide insight into the detailed scope of their investigations:

  • Chemomechanical Failure Mechanism Study in NASICON-Type Li1.3Al0.3Ti1.7(PO4)3 Solid-State Lithium Batteries, 2020, published in Chemistry of Materials
  • A Lithium-Metal Anode with Ultra-High Areal Capacity (50 mAh cm−2) by Gridding Lithium Plating/Stripping, 2021, published in Energy Storage Materials
  • Evaluating Solid-Electrolyte Interphases for Lithium and Lithium-free Anodes from Nanoindentation Features, 2020, published in Chem
  • Remarkable adsorption performance of MOF-199 derived porous carbons for benzene vapor, 2020, published in Environmental Research
  • Accelerating the Rate-Determining Steps of Sulfur Conversion Reaction for Lithium-Sulfur Batteries Working at an Ultrawide Temperature Range, 2024, published in Advanced Materials

Best Publications

  • Designable ultra-smooth ultra-thin solid-electrolyte interphases of three alkali metal anodes

    Yu Gu;Wei-Wei Wang;Yi-Juan Li;Qi-Hui Wu

  • Photoelectron spectroscopy study of oxygen vacancy on vanadium oxides surface

    Qi-Hui Wu;Andreas Thissen;Wolfram Jaegermann;Meilin Liu

  • Engineering phosphorus-doped LaFeO3-δ perovskite oxide as robust bifunctional oxygen electrocatalysts in alkaline solutions

    Zhishan Li;Lin Lv;Jinsong Wang;Xiang Ao

  • X-ray photoelectron spectroscopy of La0.5Sr0.5MnO3

    Qi-Hui Wu;Meilin Liu;W. Jaegermann

  • Chemomechanical Failure Mechanism Study in NASICON-Type Li1.3Al0.3Ti1.7(PO4)3 Solid-State Lithium Batteries

    Jianping Zhu;Jun Zhao;Yuxuan Xiang;Min Lin

  • Germanium–graphene composite anode for high-energy lithium batteries with long cycle life

    Jian-Guo Ren;Jian-Guo Ren;Qi-Hui Wu;Qi-Hui Wu;Hao Tang;Guo Hong;Guo Hong

  • Three-dimensional Sn-graphene anode for high-performance lithium-ion batteries.

    Chundong Wang;Yi Li;Ying-San Chui;Qi-Hui Wu

  • Silicon–Graphene Composite Anodes for High‐Energy Lithium Batteries

    Jian-Guo Ren;Jian-Guo Ren;Qi-Hui Wu;Qi-Hui Wu;Guo Hong;Guo Hong;Wen-Jun Zhang

  • Stabilizing Li10SnP2S12/Li Interface via an in Situ Formed Solid Electrolyte Interphase Layer

    Bizhu Zheng;Jianping Zhu;Hongchun Wang;Min Feng

  • Hollow porous titanium nitride tubes as a cathode electrode for extremely stable Li–S batteries

    Ding-Rong Deng;Tai-Hua An;Yi-Juan Li;Qi-Hui Wu

  • An Open-Structured Matrix as Oxygen Cathode with High Catalytic Activity and Large Li2O2 Accommodations for Lithium–Oxygen Batteries

    Xiaodong Lin;Ruming Yuan;Senrong Cai;Youhong Jiang

  • MnO modified carbon nanotubes as a sulfur host with enhanced performance in Li/S batteries

    Taihua An;Dingrong Deng;Ming Lei;Qi-Hui Wu

  • Silicon-Graphene Composite Anodes for High-Energy Lithium Batteries

    Unknown

  • Photoelectron spectroscopic study of Na intercalation into V2O5 thin films

    Qi-Hui Wu;Andreas Thißen;Wolfram Jaegermann

  • Tuning Electrochemical Properties of Li-Rich Layered Oxide Cathodes by Adjusting Co/Ni Ratios and Mechanism Investigation Using in situ X-ray Diffraction and Online Continuous Flow Differential Electrochemical Mass Spectrometry.

    ShouYu Shen;YuHao Hong;FuChun Zhu;ZhenMing Cao

  • A silicon nanowire–reduced graphene oxide composite as a high-performance lithium ion battery anode material

    Jian-Guo Ren;Chundong Wang;Qi-Hui Wu;Xiang Liu

  • Recent progress in organic molecule/graphene interfaces

    Guo Hong;Guo Hong;Qi-Hui Wu;Jianguo Ren;Jianguo Ren;Chundong Wang

  • A three-dimensional graphene scaffold supported thin film silicon anode for lithium-ion batteries

    Chundong Wang;Ying-San Chui;Ruguang Ma;Tailun Wong

  • Preparation, characterisation and structure of Ti and Al ultrathin oxide films on metals

    Qi-Hui Wu;Alessandro Fortunelli;Gaetano Granozzi

  • Does the oxophilic effect serve the same role for hydrogen evolution/oxidation reaction in alkaline media?

    Lin-fan Shen;Bang-an Lu;Xi-ming Qu;Jin-yu Ye

  • Evaluating Solid-Electrolyte Interphases for Lithium and Lithium-free Anodes from Nanoindentation Features

    Wei-Wei Wang;Yu Gu;Hao Yan;Sha Li

  • A Lithium-Metal Anode with Ultra-High Areal Capacity (50 mAh cm−2) by Gridding Lithium Plating/Stripping

    Pan Xu;Xinyu Hu;Xiaoyu Liu;Xiaodong Lin

  • Unraveling (electro)-chemical stability and interfacial reactions of Li10SnP2S12 in all-solid-state Li batteries

    Bizhu Zheng;Xiangsi Liu;Jianping Zhu;Jun Zhao

  • Graphene encapsulated and SiC reinforced silicon nanowires as an anode material for lithium ion batteries

    Yang Yang;Jian-Guo Ren;Xin Wang;Ying-San Chui

  • Surface Fluorination to Boost the Stability of the Fe/N/C Cathode in Proton Exchange Membrane Fuel Cells

    Yu-Cheng Wang;Peng-Fei Zhu;Hong Yang;Long Huang

  • Facile synthesis of laminate-structured graphene sheet–Fe3O4 nanocomposites with superior high reversible specific capacity and cyclic stability for lithium-ion batteries

    Chundong Wang;Qiumei Zhang;Qi-Hui Wu;Tsz-Wai Ng

Frequent Co-Authors

Chundong Wang
Chundong Wang Huazhong University of Science and Technology
Mingsen Zheng
Mingsen Zheng Xiamen University
Quanfeng Dong
Quanfeng Dong Xiamen University
Wenjun Zhang
Wenjun Zhang City University of Hong Kong
Shuit-Tong Lee
Shuit-Tong Lee Macau University of Science and Technology
Jianjun Jiang
Jianjun Jiang Huazhong University of Science and Technology
Bing-Wei Mao
Bing-Wei Mao Xiamen University
Xianfeng Chen
Xianfeng Chen University of Edinburgh
Yang Yang Li
Yang Yang Li City University of Hong Kong
Jun-Tao Li
Jun-Tao Li Xiamen University

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