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Materials Science

D-Index
59
Citations
12464
World Ranking
7375
National Ranking
2146

Overview

Jun Ming is a researcher affiliated with the University of Science and Technology of China, specializing in engineering with a strong focus on electrical and electronic engineering. Their research encompasses multiple subfields including automotive engineering, materials chemistry, electronic, optical and magnetic materials, and mechanical engineering.

Their main areas of study revolve around advanced battery materials and technologies, with a significant concentration on advancements in battery materials and advanced battery technologies research. Additional research interests include supercapacitor materials and fabrication, extraction and separation processes, and applications related to perovskite materials.

Jun Ming has published extensively in scientific journals, with frequent contributions to the following venues:

  • ACS Energy Letters (18 publications)
  • Advanced Functional Materials (11 publications)
  • Advanced Science (5 publications)
  • Advanced Energy Materials (5 publications)
  • Chemistry - A European Journal (4 publications)

Their recent papers include:

  • Emerging Era of Electrolyte Solvation Structure and Interfacial Model in Batteries, 2022, ACS Energy Letters
  • Electrolyte Solvation Structure Design for Sodium Ion Batteries, 2022, Advanced Science
  • Phenanthroline Covalent Organic Framework Electrodes for High-Performance Zinc-Ion Supercapattery, 2020, ACS Energy Letters
  • Interfacial Model Deciphering High-Voltage Electrolytes for High Energy Density, High Safety, and Fast-Charging Lithium-Ion Batteries, 2021, Advanced Materials
  • Low-Temperature Electrolyte Design for Lithium-Ion Batteries: Prospect and Challenges, 2021, Chemistry - A European Journal

Collaboration is a significant aspect of Jun Ming's research activity. Frequent co-authors include:

  • Luigi Cavallo
  • Zhen Cao
  • Wandi Wahyudi
  • Limin Wang
  • Yang-Kook Sun

Best Publications

  • Zinc-ion batteries: Materials, mechanisms, and applications

    Jun Ming;Jing Guo;Chuan Xia;Wenxi Wang

  • Emerging Era of Electrolyte Solvation Structure and Interfacial Model in Batteries

    Unknown

  • Electrolyte Solvation Structure Design for Sodium Ion Batteries

    Unknown

  • New Insights on Graphite Anode Stability in Rechargeable Batteries: Li Ion Coordination Structures Prevail over Solid Electrolyte Interphases

    Jun Ming;Zhen Cao;Wandi Wahyudi;Mengliu Li

  • Graphitic Nanocarbon with Engineered Defects for High-Performance Potassium-Ion Battery Anodes

    Wenli Zhang;Jun Ming;Wenli Zhao;Xiaochen Dong

  • Recognizing the Mechanism of Sulfurized Polyacrylonitrile Cathode Materials for Li–S Batteries and beyond in Al–S Batteries

    Wenxi Wang;Zhen Cao;Giuseppe Antonio Elia;Yingqiang Wu

  • Phenanthroline Covalent Organic Framework Electrodes for High-Performance Zinc-Ion Supercapattery

    Wenxi Wang;Vinayak Swamirao Kale;Zhen Cao;Sharath Kandambeth

  • Metal-Organic Framework-Based Separators for Enhancing Li-S Battery Stability: Mechanism of Mitigating Polysulfide Diffusion

    Mengliu Li;Yi Wan;Jing-Kai Huang;Ayalew Hussen Assen Assen

  • New Insight on the Role of Electrolyte Additives in Rechargeable Lithium Ion Batteries

    Jun Ming;Jun Ming;Zhen Cao;Yingqiang Wu;Yingqiang Wu;Wandi Wahyudi

  • Low-Temperature Electrolyte Design for Lithium-Ion Batteries: Prospect and Challenges

    Qian Li;Qian Li;Gang Liu;Gang Liu;Haoran Cheng;Haoran Cheng;Qujiang Sun

  • Porous MXenes enable high performance potassium ion capacitors

    Fangwang Ming;Hanfeng Liang;Wenli Zhang;Jun Ming

  • Facile synthesis of a Co3O4–carbon nanotube composite and its superior performance as an anode material for Li-ion batteries

    Linhai Zhuo;Yingqiang Wu;Jun Ming;Lingyan Wang

  • Interfacial Model Deciphering High-Voltage Electrolytes for High Energy Density, High Safety, and Fast-Charging Lithium-Ion Batteries

    Yeguo Zou;Zhen Cao;Junli Zhang;Wandi Wahyudi

  • Artificial Solid Electrolyte Interphase for Suppressing Surface Reactions and Cathode Dissolution in Aqueous Zinc Ion Batteries

    Jing Guo;Jun Ming;Yongjiu Lei;Wenli Zhang

  • Dipole–Dipole Interaction Induced Electrolyte Interfacial Model To Stabilize Antimony Anode for High-Safety Lithium-Ion Batteries

    Unknown

  • Recent advances in nanostructured carbon for sodium-ion batteries

    Huimin Zhang;Yongxin Huang;Hai Ming;Gaoping Cao

  • Electrolyte Engineering Enables High Stability and Capacity Alloying Anodes for Sodium and Potassium Ion Batteries

    Lin Zhou;Zhen Cao;Wandi Wahyudi;Jiao Zhang

  • An Exploration of New Energy Storage System: High Energy Density, High Safety, and Fast Charging Lithium Ion Battery

    Yingqiang Wu;Wenxi Wang;Jun Ming;Jun Ming;Mengliu Li

  • Unraveling the New Role of an Ethylene Carbonate Solvation Shell in Rechargeable Metal Ion Batteries

    Qian Li;Zhen Cao;Wandi Wahyudi;Gang Liu

  • Molecular-Scale Interfacial Model for Predicting Electrode Performance in Rechargeable Batteries

    Jun Ming;Jun Ming;Zhen Cao;Qian Li;Wandi Wahyudi

  • Lithium-Ion Desolvation Induced by Nitrate Additives Reveals New Insights into High Performance Lithium Batteries

    Wandi Wahyudi;Viko Ladelta;Leonidas Tsetseris;Merfat M. Alsabban

  • Deactivation of Ni/TiO2 catalyst in the hydrogenation of nitrobenzene in water and improvement in its stability by coating a layer of hydrophobic carbon

    Weiwei Lin;Haiyang Cheng;Jun Ming;Yancun Yu

  • Symmetrical synergy of hybrid Co9S8-MoSx electrocatalysts for hydrogen evolution reaction

    Xiaofeng Zhou;Xiaofeng Zhou;Xiulin Yang;Mohamed Nejib Hedhili;Henan Li

Frequent Co-Authors

Yang-Kook Sun
Yang-Kook Sun Hanyang University
Lain-Jong Li
Lain-Jong Li National University of Singapore
Luigi Cavallo
Luigi Cavallo King Abdullah University of Science and Technology
Fengyu Zhao
Fengyu Zhao Chinese Academy of Sciences
Husam N. Alshareef
Husam N. Alshareef King Abdullah University of Science and Technology
Limin Wang
Limin Wang Chinese Academy of Sciences
Jang Yeon Hwang
Jang Yeon Hwang Hanyang University
Hun-Gi Jung
Hun-Gi Jung Korea Institute of Science and Technology
Atsuo Yamada
Atsuo Yamada University of Tokyo
Thomas D. Anthopoulos
Thomas D. Anthopoulos University of Manchester

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