World's Best Scientists 2026 revealed!

D-Index & Metrics

Materials Science

D-Index
69
Citations
20917
World Ranking
4564
National Ranking
1419

Engineering and Technology

D-Index
69
Citations
20834
World Ranking
1112
National Ranking
216

Overview

Ying Xie is affiliated with Heilongjiang University in China and has contributed extensively to research in the fields of Engineering and Materials Science. Their work predominantly focuses on Electrical and Electronic Engineering, Materials Chemistry, and Renewable Energy, Sustainability and the Environment. Additional subfields of focus include Electronic, Optical and Magnetic Materials as well as Biomedical Engineering.

The primary topics of Ying Xie's research reflect a concentration on energy-related materials and catalysis. Key research areas include:

  • Advanced Photocatalysis Techniques
  • Electrocatalysts for Energy Conversion
  • Advancements in Battery Materials
  • Advanced Battery Materials and Technologies
  • Advanced battery technologies research
  • Supercapacitor Materials and Fabrication
  • Advanced Nanomaterials in Catalysis

A selection of recent papers demonstrates the scope and topical variety of their research. Notable recent publications include:

  • Interfacial Engineering of MoO2-FeP Heterojunction for Highly Efficient Hydrogen Evolution Coupled with Biomass Electrooxidation, 2020, Advanced Materials
  • Applications of Lithium-Ion Batteries in Grid-Scale Energy Storage Systems, 2020, Transactions of Tianjin University
  • Operando Cooperated Catalytic Mechanism of Atomically Dispersed Cu−N4 and Zn−N4 for Promoting Oxygen Reduction Reaction, 2021, Angewandte Chemie International Edition
  • Porous spherical NiO@NiMoO4@PPy nanoarchitectures as advanced electrochemical pseudocapacitor materials, 2020, Science Bulletin
  • Ultrathin Porous Carbon Nitride Bundles with an Adjustable Energy Band Structure toward Simultaneous Solar Photocatalytic Water Splitting and Selective Phenylcarbinol Oxidation, 2020, Angewandte Chemie International Edition

Ying Xie has frequently collaborated with several coauthors, with the most frequent collaborators including Ting-Feng Yi, Kai Pan, Honggang Fu, Haitao Yu, and Wei Zhou.

Their publications appear regularly in established scientific venues, notably:

  • SSRN Electronic Journal
  • Small
  • Journal of Alloys and Compounds
  • Journal of Colloid and Interface Science
  • Applied Surface Science

Best Publications

  • Ordered Mesoporous Black TiO2 as Highly Efficient Hydrogen Evolution Photocatalyst

    Wei Zhou;Wei Li;Jian-Qiang Wang;Yang Qu

  • Molecule Self-Assembly Synthesis of Porous Few-Layer Carbon Nitride for Highly Efficient Photoredox Catalysis.

    Yuting Xiao;Guohui Tian;Wei Li;Ying Xie

  • Nitrogen-doped graphene with high nitrogen level via a one-step hydrothermal reaction of graphene oxide with urea for superior capacitive energy storage

    Li Sun;Lei Wang;Chungui Tian;Taixing Tan

  • Recent advances of Li4Ti5O12 as a promising next generation anode material for high power lithium-ion batteries

    Ting-Feng Yi;Shuang-Yuan Yang;Ying Xie

  • Integrating the active OER and HER components as the heterostructures for the efficient overall water splitting

    Aiping Wu;Aiping Wu;Ying Xie;Hui Ma;Chungui Tian

  • Anion-Modulated HER and OER Activities of 3D Ni-V-Based Interstitial Compound Heterojunctions for High-Efficiency and Stable Overall Water Splitting.

    Haijing Yan;Ying Xie;Aiping Wu;Zhicheng Cai

  • P-doped tubular g-C3N4 with surface carbon defects: Universal synthesis and enhanced visible-light photocatalytic hydrogen production

    Shien Guo;Shien Guo;Yunqi Tang;Ying Xie;Chungui Tian

  • Co Nanoislands Rooted on Co-N-C Nanosheets as Efficient Oxygen Electrocatalyst for Zn-Air Batteries.

    Peng Yu;Lei Wang;Fanfei Sun;Ying Xie

  • Interfacial Engineering of MoO 2 -FeP Heterojunction for Highly Efficient Hydrogen Evolution Coupled with Biomass Electrooxidation

    Ganceng Yang;Yanqing Jiao;Haijing Yan;Ying Xie

  • Holey Reduced Graphene Oxide Coupled with an Mo2N–Mo2C Heterojunction for Efficient Hydrogen Evolution

    Haijing Yan;Ying Xie;Yanqing Jiao;Aiping Wu

  • Operando Cooperated Catalytic Mechanism of Atomically Dispersed Cu-N4 and Zn-N4 for Promoting Oxygen Reduction Reaction.

    Miaomiao Tong;Fanfei Sun;Ying Xie;Ying Wang

  • Porous spherical NiO@NiMoO4@PPy nanoarchitectures as advanced electrochemical pseudocapacitor materials

    Ting-Feng Yi;Li-Ying Qiu;Li-Ying Qiu;Jie Mei;Si-Yu Qi;Si-Yu Qi

  • Guiding Transition Metal‐Doped Hollow Cerium Tandem Nanozymes with Elaborately Regulated Multi‐Enzymatic Activities for Intensive Chemodynamic Therapy

    Unknown

  • Ultrathin Porous Carbon Nitride Bundles with an Adjustable Energy Band Structure toward Simultaneous Solar Photocatalytic Water Splitting and Selective Phenylcarbinol Oxidation.

    Honggang Fu;Baogang Wu;Liping Zhang;Baojiang Jiang

  • Boron-Induced Electronic-Structure Reformation of CoP Nanoparticles Drives Enhanced pH-Universal Hydrogen Evolution.

    Erping Cao;Zhimin Chen;Hao Wu;Peng Yu;Peng Yu

  • Two-Dimensional Porous Molybdenum Phosphide/Nitride Heterojunction Nanosheets for pH-Universal Hydrogen Evolution Reaction

    Ying Gu;Aiping Wu;Yanqing Jiao;Huiru Zheng

  • Structural and thermodynamic stability of Li4Ti5O12 anode material for lithium-ion battery

    Ting-Feng Yi;Ying Xie;Yan-Rong Zhu;Rong-Sun Zhu

  • Rational construction and decoration of Li5Cr7Ti6O25@C nanofibers as stable lithium storage materials

    Unknown

  • Highly Water-Stable Dye@Ln-MOFs for Sensitive and Selective Detection toward Antibiotics in Water

    Mingke Yu;Ying Xie;Xinyu Wang;Yuxin Li

  • Exploring the synergy of 2D MXene-supported black phosphorus quantum dots in hydrogen and oxygen evolution reactions

    Xiao-Dong Zhu;Ying Xie;Yi-Tao Liu;Yi-Tao Liu

  • Improving the high rate performance of Li4Ti5O12 through divalent zinc substitution

    Ting-Feng Yi;Haiping Liu;Yan-Rong Zhu;Li-Juan Jiang

  • High rate micron-sized niobium-doped LiMn1.5Ni0.5O4 as ultra high power positive-electrode material for lithium-ion batteries

    Ting-Feng Yi;Ying Xie;Yan-Rong Zhu;Rong-Sun Zhu

Frequent Co-Authors

Honggang Fu
Honggang Fu Heilongjiang University
Ting-Feng Yi
Ting-Feng Yi Northeastern University
Yan-Rong Zhu
Yan-Rong Zhu Northeastern University
Chungui Tian
Chungui Tian Ministry of Education of the People's Republic of China
Baojiang Jiang
Baojiang Jiang Ministry of Education of the People's Republic of China
Wei Zhou
Wei Zhou Genentech
Yang Qu
Yang Qu Heilongjiang University
Shaohua Luo
Shaohua Luo Northeastern University
Kai Pan
Kai Pan Ministry of Education of the People's Republic of China
Lei Wang
Lei Wang Nankai University

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