World's Best Scientists 2026 revealed!

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Materials Science

D-Index
43
Citations
7465
World Ranking
12300
National Ranking
3353

Overview

Ying Wang is affiliated with Tongji University in China and works primarily within the field of engineering, with a significant focus on electrical and electronic engineering. Their academic output spans multiple subfields including renewable energy, sustainability and the environment, materials chemistry, catalysis, and automotive engineering.

The research topics covered by Wang's work center around advancements in battery materials and technologies, electrocatalysts for energy conversion, CO2 reduction techniques and catalysts, and the properties and applications of ionic liquids. These themes reflect a broad engagement with energy materials and green catalytic processes.

Wang has contributed to several recent papers, including:

  • Efficient electrically powered CO2-to-ethanol via suppression of deoxygenation, 2020, Nature Energy
  • High carbon utilization in CO2 reduction to multi-carbon products in acidic media, 2022, Nature Catalysis
  • Direct Magnetic Reinforcement of Electrocatalytic ORR/OER with Electromagnetic Induction of Magnetic Catalysts, 2020, Advanced Materials
  • Lattice Matching Growth of Conductive Hierarchical Porous MOF/LDH Heteronanotube Arrays for Highly Efficient Water Oxidation, 2021, Advanced Materials
  • Cationic-group-functionalized electrocatalysts enable stable acidic CO2 electrolysis, 2023, Nature Catalysis

Frequent collaborators in Wang's research include the following coauthors:

  • Yi Xie
  • Zhanyou Xu
  • Xianyou Wang
  • Weixing Wu
  • Qian Lü

Wang has published extensively in a range of venues. The most frequent publication platforms include:

  • UNC Libraries
  • Chemical Engineering Journal
  • SSRN Electronic Journal
  • Nature Communications
  • ACS Applied Materials & Interfaces

The scientist's investigations contribute to areas such as advanced battery materials and technologies, with over 90 publications addressing this topic alone. Their work also encompasses research on electrocatalysts for energy conversion and sustainable CO2 reduction methods, highlighting an interdisciplinary approach to energy and environmental challenges.

Best Publications

  • Pt–Ru catalyzed hydrogen oxidation in alkaline media: oxophilic effect or electronic effect?

    Ying Wang;Gongwei Wang;Guangwei Li;Bing Huang

  • Prussian blue analogues derived magnetic FeCo alloy/carbon composites with tunable chemical composition and enhanced microwave absorption.

    Dawei Liu;Rong Qiang;Yunchen Du;Ying Wang

  • Multication Side Chain Anion Exchange Membranes

    Liang Zhu;Jing Pan;Ying Wang;Juanjuan Han

  • Synergistic Mn-Co catalyst outperforms Pt on high-rate oxygen reduction for alkaline polymer electrolyte fuel cells.

    Ying Wang;Yao Yang;Shuangfeng Jia;Xiaoming Wang

  • Pea-like Fe/Fe3C Nanoparticles Embedded in Nitrogen-Doped Carbon Nanotubes with Tunable Dielectric/Magnetic Loss and Efficient Electromagnetic Absorption

    Zhan Xu;Yunchen Du;Yunchen Du;Dawei Liu;Yahui Wang

  • High performance aliphatic-heterocyclic benzyl-quaternary ammonium radiation-grafted anion-exchange membranes

    Julia Ponce-González;Daniel K. Whelligan;Lianqin Wang;Rachida Bance-Soualhi

  • Compressive behaviour of hybrid fiber-reinforced reactive powder concrete after high temperature

    Wenzhong Zheng;Haiyan Li;Ying Wang

  • Compressive and tensile properties of reactive powder concrete with steel fibres at elevated temperatures

    Wenzhong Zheng;Baifu Luo;Ying Wang

  • Elastic Long-Chain Multication Cross-Linked Anion Exchange Membranes

    Juanjuan Han;Juanjuan Han;Liang Zhu;Jing Pan;Jing Pan;Tawanda J. Zimudzi

  • Compressive stress–strain relationship of steel fiber-reinforced reactive powder concrete after exposure to elevated temperatures

    Wenzhong Zheng;Haiyan Li;Ying Wang

  • In Situ X-ray Absorption Spectroscopy of a Synergistic Co-Mn Oxide Catalyst for the Oxygen Reduction Reaction.

    Yao Yang;Ying Wang;Yin Xiong;Xin Huang

  • Fe/N/C Nanotubes with Atomic Fe Sites: A Highly Active Cathode Catalyst for Alkaline Polymer Electrolyte Fuel Cells

    Huan Ren;Ying Wang;Yao Yang;Xun Tang

  • Mechanically Robust Anion Exchange Membranes via Long Hydrophilic Cross-Linkers

    Liang Zhu;Tawanda J. Zimudzi;Ying Wang;Xuedi Yu

  • Reduced graphene oxide decorated with carbon nanopolyhedrons as an efficient and lightweight microwave absorber

    Honghong Zhao;Xijiang Han;Zhennan Li;Dawei Liu

  • Recycled glass as a partial replacement for fine aggregate in structural concrete - Effects on compressive strength

    Matthew Adaway;Ying Wang

  • FeCo alloy nanoparticles supported on ordered mesoporous carbon for enhanced microwave absorption

    Wenlei Chu;Ying Wang;Yunchen Du;Rong Qiang

  • Aminothiazole-derived N,S,Fe-doped graphene nanosheets as high performance electrocatalysts for oxygen reduction

    Chi Chen;Chi Chen;Xiao-Dong Yang;Zhi-You Zhou;Yu-Jiao Lai

  • Comparison of microstructural evolution of 7075 aluminum alloy fabricated by SIMA and RAP

    Jufu Jiang;Ying Wang;Guanfei Xiao;Xi Nie

  • An effective approach for alleviating cation-induced backbone degradation in aromatic ether-based alkaline polymer electrolytes.

    Juanjuan Han;Qiong Liu;Xueqi Li;Jing Pan

  • Microstructure and mechanical properties of the rheoformed cylindrical part of 7075 aluminum matrix composite reinforced with nano-sized SiC particles

    Jufu Jiang;Ying Wang

  • Stress–strain relationship of steel-fibre reinforced reactive powder concrete at elevated temperatures

    Wenzhong Zheng;Baifu Luo;Ying Wang

Frequent Co-Authors

Hong Hao
Hong Hao Curtin University
Lin Zhuang
Lin Zhuang Wuhan University
Xinqun Zhu
Xinqun Zhu University of Technology Sydney
Li Xiao
Li Xiao Wuhan University
Yunchen Du
Yunchen Du Harbin Institute of Technology
Xijiang Han
Xijiang Han Harbin Institute of Technology
Subhamoy Bhattacharya
Subhamoy Bhattacharya University of Surrey
Jinping Ou
Jinping Ou Harbin Institute of Technology
Jin Zhou
Jin Zhou Shandong University of Technology
Michael A. Hickner
Michael A. Hickner Pennsylvania State University

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