World's Best Scientists 2026 revealed!
Mingjun Jing

Mingjun Jing

Award Badge
Rising Stars
2025

D-Index & Metrics

Rising Stars

D-Index
40
Citations
6673
World Ranking
652
National Ranking
228

Chemistry

D-Index
42
Citations
7090
World Ranking
17481
National Ranking
2624

Research.com Recognitions

  • 2025 - Research.com Rising Stars Award

Overview

Mingjun Jing is affiliated with Xiangtan University in China. The research focus spans across engineering and materials science, with significant contributions to electrical and electronic engineering as well as electronic, optical, and magnetic materials. Additional subfields of study include renewable energy, sustainability and the environment, materials chemistry, and polymers and plastics.

The primary research themes encompass advancements in battery materials, supercapacitor materials and fabrication, advanced battery technologies, electrocatalysts for energy conversion, fuel cells and related materials, and MXene and MAX phase materials.

Frequent coauthors in Mingjun Jing's work include Tianjing Wu, Xianyou Wang, Wenhui Deng, Yingchang Yang, and Hongshuai Hou.

Key recent publications cover a range of topics related to energy storage and catalysis:

  • Single atomic Fe-pyridine N catalyst with dense active sites improve bifunctional electrocatalyst activity for rechargeable and flexible Zn-air batteries, 2022, Journal of Materials Chemistry A
  • Biomass absorption of nickel salt derived carbon wrapped NiS/Ni3S4 nanocomposite as efficient electrode for supercapacitors, 2022, Journal of Alloys and Compounds
  • Recent Developments of Carbon Dots for Advanced Zinc-Based Batteries: A Review, 2024, Advanced Functional Materials
  • Multi-color materials NiMn LDH loaded on activated carbon as electrode for electrochemical performance investigation, 2022, Applied Surface Science
  • Highly active air electrode catalysts for Zn-air batteries: Catalytic mechanism and active center from obfuscation to clearness, 2024, Carbon Neutralization

Common publication venues where Mingjun Jing's work appears include SSRN Electronic Journal, Journal of Alloys and Compounds, Chemical Engineering Journal, Journal of Materials Chemistry A, and Carbon Neutralization.

Best Publications

  • Carbon Quantum Dots and Their Derivative 3D Porous Carbon Frameworks for Sodium-Ion Batteries with Ultralong Cycle Life.

    Hongshuai Hou;Craig E. Banks;Mingjun Jing;Yan Zhang

  • Mesoporous NiCo2S4 nanoparticles as high-performance electrode materials for supercapacitors

    Yirong Zhu;Zhibin Wu;Mingjun Jing;Xuming Yang

  • Porous NiCo2O4 spheres tuned through carbon quantum dots utilised as advanced materials for an asymmetric supercapacitor

    Yirong Zhu;Zhibin Wu;Mingjun Jing;Hongshuai Hou

  • First exploration of Na-ion migration pathways in the NASICON structure Na3V2(PO4)3

    Weixin Song;Xiaobo Ji;Zhengping Wu;Yirong Zhu

  • High Energy Density Asymmetric Supercapacitors From Mesoporous NiCo2S4 Nanosheets

    Zhibin Wu;Xuli Pu;Xiaobo Ji;Yirong Zhu

  • Carbon dots supported upon N-doped TiO2 nanorods applied into sodium and lithium ion batteries

    Yingchang Yang;Xiaobo Ji;Mingjun Jing;Hongshuai Hou

  • Ti3+ Self-Doped Dark Rutile TiO2 Ultrafine Nanorods with Durable High-Rate Capability for Lithium-Ion Batteries

    Jun Chen;Weixin Song;Hongshuai Hou;Yan Zhang

  • One-Dimensional Rod-Like Sb2S3-Based Anode for High-Performance Sodium-Ion Batteries

    Hongshuai Hou;Mingjun Jing;Zhaodong Huang;Yingchang Yang

  • Sodium/Lithium storage behavior of antimony hollow nanospheres for rechargeable batteries.

    Hongshuai Hou;Mingjun Jing;Yingchang Yang;Yirong Zhu

  • Controllable Chain‐Length for Covalent Sulfur–Carbon Materials Enabling Stable and High‐Capacity Sodium Storage

    Tianjing Wu;Mingjun Jing;Li Yang;Guoqiang Zou

  • Graphene-Embedded Co3O4 Rose-Spheres for Enhanced Performance in Lithium Ion Batteries

    Mingjun Jing;Minjie Zhou;Minjie Zhou;Gangyong Li;Zhengu Chen

  • Sb porous hollow microspheres as advanced anode materials for sodium-ion batteries

    Hongshuai Hou;Mingjun Jing;Yingchang Yang;Yan Zhang

  • Carbon quantum dot coated Mn3O4 with enhanced performances for lithium-ion batteries

    Mingjun Jing;Jufeng Wang;Hongshuai Hou;Yingchang Yang

  • Alternating Voltage Introduced NiCo Double Hydroxide Layered Nanoflakes for an Asymmetric Supercapacitor.

    Mingjun Jing;Hongshuai Hou;Craig E. Banks;Yingchang Yang

  • Enhanced sodium storage behavior of carbon coated anatase TiO2 hollow spheres

    Yan Zhang;Yingchang Yang;Hongshuai Hou;Xuming Yang

  • Antimony nanoparticles anchored on interconnected carbon nanofibers networks as advanced anode material for sodium-ion batteries

    Hongshuai Hou;Mingjun Jing;Yingchang Yang;Yan Zhang

  • An Asymmetric Ultracapacitors Utilizing α-Co(OH)2/Co3O4 Flakes Assisted by Electrochemically Alternating Voltage

    Mingjun Jing;Yingchang Yang;Yirong Zhu;Hongshuai Hou

  • Facile Synthesis of ZnS/N,S Co-doped Carbon Composite from Zinc Metal Complex for High-Performance Sodium-Ion Batteries.

    Mingjun Jing;Zhengu Chen;Zhi Li;Fangyi Li

  • An electrochemical exploration of hollow NiCo2O4 submicrospheres and its capacitive performances

    Yirong Zhu;Jufeng Wang;Zhibin Wu;Mingjun Jing

  • An electrochemical investigation of rutile TiO2 microspheres anchored by nanoneedle clusters for sodium storage.

    Yan Zhang;Xuli Pu;Yingchang Yang;Yirong Zhu

Frequent Co-Authors

Xiaobo Ji
Xiaobo Ji Central South University
Hongshuai Hou
Hongshuai Hou Central South University
Yirong Zhu
Yirong Zhu Hunan University of Technology
Craig E. Banks
Craig E. Banks Manchester Metropolitan University
Guoqiang Zou
Guoqiang Zou Central South University
Zhaodong Huang
Zhaodong Huang City University of Hong Kong
Xiaobo Chen
Xiaobo Chen University of Missouri–Kansas City
Zhi Li
Zhi Li University of Alberta
Xiaoqing Qiu
Xiaoqing Qiu Central South University
Yafei Kuang
Yafei Kuang Hunan University

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