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2025

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Rising Stars

D-Index
47
Citations
5411
World Ranking
410
National Ranking
143

Materials Science

D-Index
50
Citations
6100
World Ranking
10366
National Ranking
2909

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  • 2025 - Research.com Rising Stars Award

Overview

Xinqiang Wang is a researcher affiliated with the University of Electronic Science and Technology of China. Their work primarily spans the fields of engineering and energy, with a considerable focus on electrical and electronic engineering as well as renewable energy, sustainability, and the environment. Their research also involves materials chemistry, electrochemistry, and automotive engineering.

The scientist's research topics reflect a specialization in energy conversion and storage technologies. Key areas of their work include electrocatalysts for energy conversion, advanced battery technologies research, advanced photocatalysis techniques, and developments in advanced battery materials and technologies. Other notable topics are electrochemical analysis and applications and fuel cells and related materials.

Xinqiang Wang has published extensively in several scientific journals. Among the most frequent publication venues are:

  • Advanced Functional Materials
  • Chemical Engineering Journal
  • Journal of Material Science and Technology
  • Advanced Materials
  • Small

Their recent publications include:

  • "Mo2C quantum dots@graphene functionalized separator toward high-current-density lithium metal anodes for ultrastable Li-S batteries" (2020, Chemical Engineering Journal)
  • "Outstanding Catalytic Effects of 1T'-MoTe2 Quantum Dots@3D Graphene in Shuttle-Free Li-S Batteries" (2021, ACS Nano)
  • "Atomic Engineering of Single-Atom Nanozymes for Biomedical Applications" (2024, Advanced Materials)
  • "In Situ Construction of Mo2C Quantum Dots-Decorated CNT Networks as a Multifunctional Electrocatalyst for Advanced Lithium-Sulfur Batteries" (2021, Small)
  • "Constructing Ni/NiS Heteronanoparticle-Embedded Metal-Organic Framework-Derived Nanosheets for Enhanced Water-Splitting Catalysis" (2021, ACS Sustainable Chemistry & Engineering)

Frequent coauthors who have collaborated with Xinqiang Wang include Yuanfu Chen, Bo Yu, Xiaojuan Zhang, Bin Wang, and Katam Srinivas. These collaborations are reflected in the coauthored publications and contribute to interdisciplinary advancements in their shared areas of study.

Best Publications

  • CoSe2 nanoparticles embedded MOF-derived co-n-c nanoflake arrays as efficient and stable electrocatalyst for hydrogen evolution reaction

    Xinqiang Wang;Jiarui He;Bo Yu;Baochen Sun

  • In situ synthesis of hierarchical MoSe2–CoSe2 nanotubes as an efficient electrocatalyst for the hydrogen evolution reaction in both acidic and alkaline media

    Xinqiang Wang;Binjie Zheng;Bo Yu;Bo Wang

  • Self-Assembled Coral-like Hierarchical Architecture Constructed by NiSe2 Nanocrystals with Comparable Hydrogen-Evolution Performance of Precious Platinum Catalyst

    Bo Yu;Xinqiang Wang;Fei Qi;Binjie Zheng

  • Graphene-like WSe2 nanosheets for efficient and stable hydrogen evolution

    Xinqiang Wang;Yuanfu Chen;Binjie Zheng;Fei Qi

  • Hierarchically Porous W-Doped CoP Nanoflake Arrays as Highly Efficient and Stable Electrocatalyst for pH-Universal Hydrogen Evolution

    Xinqiang Wang;Yuanfu Chen;Bo Yu;Zegao Wang;Zegao Wang

  • Self-assembled cauliflower-like FeS2 anchored into graphene foam as free-standing anode for high-performance lithium-ion batteries

    Jiarui He;Qian Li;Yuanfu Chen;Chen Xu

  • Mo2C quantum dots@graphene functionalized separator toward high-current-density lithium metal anodes for ultrastable Li-S batteries

    Bo Yu;Dongjiang Chen;Zegao Wang;Zegao Wang;Fei Qi

  • Outstanding Catalytic Effects of 1T'-MoTe2 Quantum Dots@3D Graphene in Shuttle-Free Li-S Batteries.

    Bo Yu;Aijian Huang;Aijian Huang;Katam Srinivas;Xiaojuan Zhang

  • Fe3N@N-doped Graphene as a Lithiophilic Interlayer for Highly Stable Lithium Metal Batteries

    Unknown

  • Few-layered ReS2 nanosheets grown on carbon nanotubes: A highly efficient anode for high-performance lithium-ion batteries

    Fei Qi;Jiarui He;Yuanfu Chen;Binjie Zheng

  • Co0.85Se hollow nanospheres anchored on N-doped graphene nanosheets as highly efficient, nonprecious electrocatalyst for hydrogen evolution reaction in both acid and alkaline media

    Haiqi Wang;Xinqiang Wang;Dongxu Yang;Binjie Zheng

  • Interwoven WSe2/CNTs hybrid network: A highly efficient and stable electrocatalyst for hydrogen evolution

    Xinqiang Wang;Yuanfu Chen;Fei Qi;Binjie Zheng

  • A Single‐Step Hydrothermal Route to 3D Hierarchical Cu2O/CuO/rGO Nanosheets as High‐Performance Anode of Lithium‐Ion Batteries

    Songhao Wu;Gaoliang Fu;Weiqiang Lv;Jiake Wei

  • Nanocrystalline Co0.85Se Anchored on Graphene Nanosheets as a Highly Efficient and Stable Electrocatalyst for Hydrogen Evolution Reaction

    Bo Yu;Fei Qi;Yuanfu Chen;Xinqiang Wang

  • 1T-MoS2 nanotubes wrapped with N-doped graphene as highly-efficient absorbent and electrocatalyst for Li–S batteries

    Bo Yu;Yuanfu Chen;Yuanfu Chen;Zegao Wang;Zegao Wang;Dongjiang Chen

  • Nanocrystalline Ni0.85Se as Efficient Non-noble-metal Electrocatalyst for Hydrogen Evolution Reaction

    Bo Yu;Yang Hu;Fei Qi;Xinqiang Wang

  • Few-layered WSe2 nanoflowers anchored on graphene nanosheets: a highly efficient and stable electrocatalyst for hydrogen evolution

    Xinqiang Wang;Yuanfu Chen;Binjie Zheng;Fei Qi

  • Self-assembled CoSe2 nanocrystals embedded into carbon nanowires as highly efficient catalyst for hydrogen evolution reaction

    Keren Zhou;Jiarui He;Xinqiang Wang;Jie Lin

  • Self-assembled chrysanthemum-like microspheres constructed by few-layer ReSe2 nanosheets as a highly efficient and stable electrocatalyst for hydrogen evolution reaction

    Fei Qi;Xinqiang Wang;Binjie Zheng;Yuanfu Chen

  • In Situ Construction of Mo 2 C Quantum Dots‐Decorated CNT Networks as a Multifunctional Electrocatalyst for Advanced Lithium–Sulfur Batteries

    Bo Yu;Aijian Huang;Dongjiang Chen;Katam Srinivas

  • In-situ Selenization of Co-based Metal-Organic Frameworks as a Highly Efficient Electrocatalyst for Hydrogen Evolution Reaction

    Jie Lin;Jiarui He;Fei Qi;Binjie Zheng

  • Scalable synthesis of porous hollow CoSe2–MoSe2/carbon microspheres for highly efficient hydrogen evolution reaction in acidic and alkaline media

    Bo Wang;Zegao Wang;Zegao Wang;Xinqiang Wang;Binjie Zheng

Frequent Co-Authors

Yuanfu Chen
Yuanfu Chen University of Electronic Science and Technology of China
Wanli Zhang
Wanli Zhang University of Electronic Science and Technology of China
Bo Yu
Bo Yu Southwest Petroleum University
Jiarui He
Jiarui He The University of Texas at Austin
Zegao Wang
Zegao Wang Sichuan University
Bin Wang
Bin Wang University of Hawaii at Manoa
Yanrong Li
Yanrong Li University of Electronic Science and Technology of China
Bin Wang
Bin Wang Soochow University
Weidong He
Weidong He University of Electronic Science and Technology of China
Xuedong Bai
Xuedong Bai Chinese Academy of Sciences

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