World's Best Scientists 2026 revealed!
Jungbae Kim

Jungbae Kim

D-Index & Metrics

Materials Science

D-Index
53
Citations
13862
World Ranking
9091
National Ranking
398

Chemistry

D-Index
53
Citations
13881
World Ranking
12920
National Ranking
246

Engineering and Technology

D-Index
53
Citations
14077
World Ranking
3325
National Ranking
67

Jungbae Kim publication distribution in Engineering and Technology in 2026

The chart shows the distribution of publications by all Research.com ranked scientists in the field of Engineering and Technology in 2026. The highlighted bar marks where Jungbae Kim sits on this spectrum.

38–47 publications: 20 scientists 48–57 publications: 35 scientists 58–67 publications: 96 scientists 68–77 publications: 134 scientists 78–87 publications: 190 scientists 88–97 publications: 259 scientists 98–107 publications: 283 scientists 108–117 publications: 369 scientists 118–127 publications: 341 scientists 128–137 publications: 386 scientists 138–147 publications: 372 scientists 148–157 publications: 457 scientists 158–167 publications: 415 scientists 168–177 publications: 407 scientists 178–187 publications: 421 scientists 188–197 publications: 378 scientists 198–207 publications: 403 scientists 208–217 publications: 317 scientists 218–227 publications: 346 scientists 228–237 publications: 321 scientists 238–247 publications: 260 scientists 248–257 publications: 280 scientists 258–267 publications: 240 scientists 268–277 publications: 214 scientists 278–287 publications: 242 scientists 288–297 publications: 203 scientists 298–307 publications: 166 scientists 308–317 publications: 154 scientists 318–327 publications: 175 scientists 328–337 publications: 159 scientists 338–347 publications: 99 scientists 348–357 publications: 131 scientists 358–367 publications: 106 scientists 368–377 publications: 117 scientists 378–387 publications: 97 scientists 388–397 publications: 108 scientists 398–407 publications: 82 scientists 408–417 publications: 71 scientists 418–427 publications: 64 scientists 428–437 publications: 55 scientists 438–447 publications: 54 scientists 448–457 publications: 59 scientists 458–467 publications: 47 scientists 468–477 publications: 40 scientists 478–487 publications: 30 scientists 488–497 publications: 29 scientists 498–507 publications: 38 scientists 508–517 publications: 40 scientists 518–527 publications: 32 scientists 528–537 publications: 23 scientists 538–547 publications: 28 scientists 548–557 publications: 23 scientists 558–567 publications: 19 scientists 568–577 publications: 16 scientists 578–587 publications: 17 scientists 588–597 publications: 18 scientists 598–607 publications: 22 scientists 608–617 publications: 15 scientists 618–627 publications: 9 scientists 628–637 publications: 11 scientists 638–647 publications: 21 scientists 648–657 publications: 12 scientists 658–667 publications: 9 scientists 668–677 publications: 11 scientists 678–687 publications: 9 scientists 688–697 publications: 6 scientists 698–707 publications: 14 scientists 708–717 publications: 7 scientists 718–727 publications: 8 scientists 728–737 publications: 10 scientists 738–747 publications: 9 scientists 748–757 publications: 5 scientists 758–767 publications: 5 scientists 768–777 publications: 11 scientists 778–787 publications: 7 scientists 788–797 publications: 2 scientists 798–803 publications: 4 scientists 804+ publications: 100 scientists
38 publications 804+

This scientist: 252 publications — 65th percentile

65% of scientists in this discipline score the same or lower.

The last bar groups every scientist with 804 publications or more.

Jungbae Kim D-index placement in Engineering and Technology in 2026

The chart shows the D-index (discipline H-index) distribution of Engineering and Technology scientists ranked by Research.com in 2026. The highlighted bar marks where Jungbae Kim sits on this spectrum.

30 D-Index: 59 scientists 31 D-Index: 114 scientists 32 D-Index: 128 scientists 33 D-Index: 189 scientists 34 D-Index: 200 scientists 35 D-Index: 262 scientists 36 D-Index: 311 scientists 37 D-Index: 312 scientists 38 D-Index: 350 scientists 39 D-Index: 385 scientists 40 D-Index: 349 scientists 41 D-Index: 362 scientists 42 D-Index: 425 scientists 43 D-Index: 380 scientists 44 D-Index: 310 scientists 45 D-Index: 341 scientists 46 D-Index: 301 scientists 47 D-Index: 306 scientists 48 D-Index: 271 scientists 49 D-Index: 246 scientists 50 D-Index: 210 scientists 51 D-Index: 253 scientists 52 D-Index: 213 scientists 53 D-Index: 221 scientists 54 D-Index: 195 scientists 55 D-Index: 186 scientists 56 D-Index: 170 scientists 57 D-Index: 167 scientists 58 D-Index: 166 scientists 59 D-Index: 144 scientists 60 D-Index: 152 scientists 61 D-Index: 141 scientists 62 D-Index: 138 scientists 63 D-Index: 131 scientists 64 D-Index: 118 scientists 65 D-Index: 114 scientists 66 D-Index: 119 scientists 67 D-Index: 94 scientists 68 D-Index: 87 scientists 69 D-Index: 77 scientists 70 D-Index: 89 scientists 71 D-Index: 69 scientists 72 D-Index: 54 scientists 73 D-Index: 46 scientists 74 D-Index: 55 scientists 75 D-Index: 54 scientists 76 D-Index: 49 scientists 77 D-Index: 53 scientists 78 D-Index: 46 scientists 79 D-Index: 28 scientists 80 D-Index: 39 scientists 81 D-Index: 36 scientists 82 D-Index: 24 scientists 83 D-Index: 26 scientists 84 D-Index: 36 scientists 85 D-Index: 18 scientists 86 D-Index: 24 scientists 87 D-Index: 19 scientists 88 D-Index: 26 scientists 89 D-Index: 27 scientists 90 D-Index: 23 scientists 91 D-Index: 15 scientists 92 D-Index: 12 scientists 93 D-Index: 9 scientists 94 D-Index: 15 scientists 95 D-Index: 10 scientists 96 D-Index: 13 scientists 97 D-Index: 13 scientists 98 D-Index: 9 scientists 99 D-Index: 7 scientists 100 D-Index: 7 scientists 101 D-Index: 8 scientists 102 D-Index: 7 scientists 103 D-Index: 7 scientists 104 D-Index: 9 scientists 105 D-Index: 6 scientists 106 D-Index: 9 scientists 107+ D-Index: 99 scientists
30 D-Index 107+

This scientist: 53 D-Index — 66th percentile

66% of scientists in this discipline score the same or lower.

The last bar groups every scientist with 107 D-Index or more.

Overview

Jungbae Kim is affiliated with Korea University in South Korea and has a research portfolio strongly rooted in engineering and materials science. Their work explores interdisciplinary fields spanning molecular biology, biomedical engineering, materials chemistry, electrical and electronic engineering, and renewable energy, sustainability, and the environment. These subfields reflect the diverse scientific approaches employed in their studies.

Kim's recent publications demonstrate a focus on nanomaterials, enzyme catalysis, and carbon dioxide conversion technologies. Notable recent papers include Recent advances in multifunctional nanomaterials for photothermal-enhanced Fenton-based chemodynamic tumor therapy (2022, Materials Today Bio), Carbonic anhydrase for CO2 capture, conversion and utilization (2022, Current Opinion in Biotechnology), and Stabilized and Immobilized Carbonic Anhydrase on Electrospun Nanofibers for Enzymatic CO2 Conversion and Utilization in Expedited Microalgal Growth (2020, Environmental Science & Technology). Other works address the synthesis of enzyme-embedded covalent organic frameworks and multifunctional conjugated polymer nanomaterials for phototherapy in microbial infection theranostics.

Regarding coauthors, Kim collaborates frequently with Youngho Wee, Han Sol Kim, Kyung-Min Yeon, Kyungmin Ahn, and Jinwoo Lee, showing repeated partnerships that suggest ongoing research projects and shared expertise in relevant scientific domains.

Publications have appeared frequently in venues such as SSRN Electronic Journal, Chemical Engineering Journal, Current Opinion in Biotechnology, Advanced Functional Materials, and Environmental Research. This dispersion highlights the relevance of Kim's work across both applied and fundamental research platforms.

Kim's research engages with several main topics, including:

  • Electrochemical sensors and biosensors
  • Enzyme catalysis and immobilization
  • CO2 reduction techniques and catalysts
  • Electrochemical analysis and applications
  • Algal biology and biofuel production
  • Advanced biosensing and bioanalysis techniques
  • Conducting polymers and applications

These topics underscore Kim's interdisciplinary approach addressing environmental challenges, biochemical processes, and materials development. The integration of enzyme technology and CO2 conversion reflects an emphasis on sustainability and renewable energy solutions within their engineering framework.

Best Publications

  • A Universal Method to Produce Low―Work Function Electrodes for Organic Electronics

    Yinhua Zhou;Canek Fuentes-Hernandez;Jaewon Shim;Jens Meyer

  • Magnetic Fluorescent Delivery Vehicle Using Uniform Mesoporous Silica Spheres Embedded with Monodisperse Magnetic and Semiconductor Nanocrystals

    Jaeyun Kim;Ji Eun Lee;Jinwoo Lee;Jung Ho Yu

  • Nanostructures for enzyme stabilization

    Jungbae Kim;Jay W. Grate;Ping Wang

  • Challenges in biocatalysis for enzyme-based biofuel cells.

    Jungbae Kim;Hongfei Jia;Ping Wang

  • Nanobiocatalysis and Its Potential Applications

    Jungbae Kim;Jay W. Grate;Ping Wang

  • Simple Synthesis of Functionalized Superparamagnetic Magnetite/Silica Core/Shell Nanoparticles and their Application as Magnetically Separable High‐Performance Biocatalysts

    Jinwoo Lee;Youjin Lee;Jong Kyu Youn;Hyon Bin Na

  • Single-Enzyme Nanoparticles Armored by a Nanometer-Scale Organic/Inorganic Network

    Jungbae Kim;Jay W. Grate

  • Magnetic Enzyme Carrier for Effective Biofouling Control in the Membrane Bioreactor Based on Enzymatic Quorum Quenching

    Kyung Min Yeon;Chung Hak Lee;Jungbae Kim

  • Simple Fabrication of a Highly Sensitive and Fast Glucose Biosensor Using Enzymes Immobilized in Mesocellular Carbon Foam

    D. Lee;J. Lee;J. Kim;H. B. Na

  • Preparation of biocatalytic nanofibres with high activity and stability via enzyme aggregate coating on polymer nanofibres

    Byoung Chan Kim;Sujith Nair;Jungbae Kim;Ja Hun Kwak

  • Crosslinked enzyme aggregates in hierarchically‐ordered mesoporous silica: A simple and effective method for enzyme stabilization

    Moon Il Kim;Jungbae Kim;Jinwoo Lee;Hongfei Jia

  • Selective Oxidative Degradation of Organic Pollutants by Singlet Oxygen-Mediated Photosensitization: Tin Porphyrin versus C60 Aminofullerene Systems

    Heechan Kim;Wooyul Kim;Yuri MacKeyev;Gi Seon Lee

  • Simple Synthesis of Hierarchically Ordered Mesocellular Mesoporous Silica Materials Hosting Crosslinked Enzyme Aggregates

    Jinwoo Lee;Jungbae Kim;Jaeyun Kim;Hong Fei Jia

  • Top-Gate Organic Field-Effect Transistors with High Environmental and Operational Stability

    Do Kyung Hwang;Canek Fuentes-Hernandez;Jungbae Kim;William J. Potscavage

  • Recent advances in multifunctional nanomaterials for photothermal-enhanced Fenton-based chemodynamic tumor therapy

    Unknown

  • Low-voltage InGaZnO thin-film transistors with Al2O3 gate insulator grown by atomic layer deposition

    Jungbae Kim;Canek Fuentes-Hernandez;William J. Potscavage;Xiaohong Zhang

  • Preparation of a Magnetically Switchable Bio-electrocatalytic System Employing Cross-linked Enzyme Aggregates in Magnetic Mesocellular Carbon Foam†

    Jinwoo Lee;Dohoon Lee;Eunkeu Oh;Jaeyun Kim

  • Direct fabrication of enzyme-carrying polymer nanofibers by electrospinning

    Thurston E. Herricks;Sae Hoon Kim;Jungbae Kim;Dan Li

  • Production dynamics of the eelgrass, Zostera marina in two bay systems on the south coast of the Korean peninsula

    Kun-Seop Lee;Sang Rul Park;Jung-Bae Kim

  • Solvent and polymer matrix effects on TIPS-pentacene/polymer blend organic field-effect transistors

    Do Kyung Hwang;Canek Fuentes-Hernandez;John D. Berrigan;Yunnan Fang

  • Miniature biofuel cells with improved stability under continuous operation

    Michael B. Fischback;Jong Kyu Youn;Xueyan Zhao;Ping Wang

  • Catalytic properties and potential of an extracellular protease from an extreme halophile

    Keungarp Ryu;Jungbae Kim;Jonathan S. Dordick

  • Immobilization of glucose oxidase into polyaniline nanofiber matrix for biofuel cell applications.

    Hyeongseok Kim;Inseon Lee;Yongchai Kwon;Byoung Chan Kim

Frequent Co-Authors

Jinwoo Lee
Jinwoo Lee Korea Advanced Institute of Science and Technology
Taeghwan Hyeon
Taeghwan Hyeon Seoul National University
Ping Wang
Ping Wang University of Minnesota
Bernard Kippelen
Bernard Kippelen Georgia Institute of Technology
Jonathan S. Dordick
Jonathan S. Dordick Rensselaer Polytechnic Institute
Man Bock Gu
Man Bock Gu Korea University
Su Ha
Su Ha Washington State University
Canek Fuentes-Hernandez
Canek Fuentes-Hernandez Northeastern University
Jay W. Grate
Jay W. Grate Pacific Northwest National Laboratory
Hyun Gyu Park
Hyun Gyu Park Korea Advanced Institute of Science and Technology

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