World's Best Scientists 2026 revealed!
Mingchuan Luo

Mingchuan Luo

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Rising Stars
2025

D-Index & Metrics

Rising Stars

D-Index
58
Citations
16892
World Ranking
178
National Ranking
59

Chemistry

D-Index
59
Citations
20801
World Ranking
9984
National Ranking
1656

Research.com Recognitions

  • 2025 - Research.com Rising Stars Award

Overview

Mingchuan Luo is affiliated with Peking University in China and has contributed extensively to research in the fields of energy and engineering. Their scholarly work spans a range of topics primarily related to electrocatalysis, renewable energy, and materials chemistry.

The scientist's main fields of study encompass:

  • Energy
  • Engineering

Within these fields, Mingchuan Luo has focused on several subfields, including:

  • Renewable Energy, Sustainability and the Environment
  • Electrical and Electronic Engineering
  • Materials Chemistry
  • Catalysis
  • Electrochemistry

Their research topics cover a variety of areas such as:

  • Electrocatalysts for Energy Conversion
  • CO2 Reduction Techniques and Catalysts
  • Advanced Battery Technologies Research
  • Fuel Cells and Related Materials
  • Catalytic Processes in Materials Science
  • Advanced Photocatalysis Techniques
  • Electrochemical Analysis and Applications

Mingchuan Luo has published notably in the following venues, contributing multiple papers to these journals and platforms:

  • Nature Communications (16 publications)
  • Journal of the American Chemical Society (15 publications)
  • Advanced Materials (8 publications)
  • Nature Synthesis (6 publications)
  • Nature Catalysis (4 publications)

Their recent significant papers include:

  • "Enhanced Nitrate-to-Ammonia Activity on Copper-Nickel Alloys via Tuning of Intermediate Adsorption," 2020, Journal of the American Chemical Society
  • "CO 2 Electrolysis to Multicarbon Products in Strong Acid," 2021, Science
  • "Recent Advances on Water-Splitting Electrocatalysis Mediated by Noble-Metal-Based Nanostructured Materials," 2020, Advanced Energy Materials
  • "Efficient Electrically Powered CO2-to-Ethanol via Suppression of Deoxygenation," 2020, Nature Energy
  • "Cascade CO2 Electroreduction Enables Efficient Carbonate-Free Production of Ethylene," 2021, Joule

Frequent co-authors collaborating with Mingchuan Luo include:

  • Shaojun Guo
  • Fengwang Li
  • Lin Gu
  • Menggang Li

Best Publications

  • PdMo bimetallene for oxygen reduction catalysis

    Mingchuan Luo;Zhonglong Zhao;Yelong Zhang;Yingjun Sun

  • Enhanced Nitrate-to-Ammonia Activity on Copper-Nickel Alloys via Tuning of Intermediate Adsorption

    Yuhang Wang;Aoni Xu;Ziyun Wang;Linsong Huang

  • CO2 electrolysis to multicarbon products in strong acid

    Jianan Erick Huang;Fengwang Li;Fengwang Li;Adnan Ozden;Armin Sedighian Rasouli

  • Molecular tuning of CO2-to-ethylene conversion.

    Fengwang Li;Arnaud Thevenon;Alonso Rosas-Hernández;Ziyun Wang

  • Strain-controlled electrocatalysis on multimetallic nanomaterials

    Mingchuan Luo;Shaojun Guo

  • Recent Advances on Water-Splitting Electrocatalysis Mediated by Noble-Metal-Based Nanostructured Materials

    Yingjie Li;Yingjun Sun;Yingjun Sun;Yingnan Qin;Yingnan Qin;Weiyu Zhang

  • Cooperative CO2-to-ethanol conversion via enriched intermediates at molecule–metal catalyst interfaces

    Fengwang Li;Yuguang C. Li;Ziyun Wang;Jun Li

  • Efficient electrically powered CO2-to-ethanol via suppression of deoxygenation

    Xue Wang;Ziyun Wang;F. Pelayo García de Arquer;Cao Thang Dinh

  • Binding Site Diversity Promotes CO2 Electroreduction to Ethanol.

    Yuguang C Li;Ziyun Wang;Tiange Yuan;Dae-Hyun Nam

  • Catalyst synthesis under CO2 electroreduction favours faceting and promotes renewable fuels electrosynthesis

    Yuhang Wang;Ziyun Wang;Cao Thang Dinh;Jun Li

  • Single-atom cobalt array bound to distorted 1T MoS 2 with ensemble effect for hydrogen evolution catalysis

    Kun Qi;Xiaoqiang Cui;Lin Gu;Shansheng Yu

  • The Marriage of the FeN4 Moiety and MXene Boosts Oxygen Reduction Catalysis: Fe 3d Electron Delocalization Matters.

    Zilan Li;Zechao Zhuang;Fan Lv;Han Zhu

  • Stable High-Index Faceted Pt Skin on Zigzag-Like PtFe Nanowires Enhances Oxygen Reduction Catalysis.

    Mingchuan Luo;Yingjun Sun;Yingjun Sun;Xu Zhang;Yingnan Qin;Yingnan Qin

  • Hydroxide promotes carbon dioxide electroreduction to ethanol on copper via tuning of adsorbed hydrogen.

    Mingchuan Luo;Ziyun Wang;Yuguang C. Li;Jun Li

  • Metal Surface and Interface Energy Electrocatalysis: Fundamentals, Performance Engineering, and Opportunities

    Yong Yang;Mingchuan Luo;Weiyu Zhang;Yingjun Sun;Yingjun Sun

  • Strengthening reactive metal-support interaction to stabilize high-density Pt single atoms on electron-deficient g-C3N4 for boosting photocatalytic H2 production

    Peng Zhou;Fan Lv;Na Li;Yelong Zhang

  • Ultrathin PtNiM (M = Rh, Os, and Ir) Nanowires as Efficient Fuel Oxidation Electrocatalytic Materials.

    Weiyu Zhang;Yong Yang;Bolong Huang;Fan Lv

  • Cascade CO2 electroreduction enables efficient carbonate-free production of ethylene

    Adnan Ozden;Yuhang Wang;Fengwang Li;Mingchuan Luo

  • Tuning Nanowires and Nanotubes for Efficient Fuel-Cell Electrocatalysis

    Wei Wang;Fan Lv;Bo Lei;Sheng Wan

  • Electrochemical upgrade of CO2 from amine capture solution

    Geonhui Lee;Yuguang C. Li;Ji-Yong Kim;Tao Peng

  • A Universal Strategy for Intimately Coupled Carbon Nanosheets/MoM Nanocrystals (M = P, S, C, and O) Hierarchical Hollow Nanospheres for Hydrogen Evolution Catalysis and Sodium-Ion Storage.

    Yong Yang;Mingchuan Luo;Yi Xing;Shitong Wang

Frequent Co-Authors

Shaojun Guo
Shaojun Guo Peking University
Yingjie Li
Yingjie Li Anhui University of Technology
Edward H. Sargent
Edward H. Sargent Northwestern University
Fan Lv
Fan Lv Peking University
David Sinton
David Sinton University of Toronto
Jun Li
Jun Li Shanghai Jiao Tong University
Bin Chen
Bin Chen Northwestern University
Cao-Thang Dinh
Cao-Thang Dinh Queen's University
Bolong Huang
Bolong Huang City University of Hong Kong
Dong Su
Dong Su Chinese Academy of Sciences

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