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Materials Science

D-Index
46
Citations
9326
World Ranking
11367
National Ranking
3146

Overview

Li Xiao is affiliated with Wuhan University in China and has an extensive research portfolio primarily focused on engineering and energy. Their work broadly spans electrical and electronic engineering, renewable energy, sustainability, materials chemistry, and catalysis, reflecting a multidisciplinary approach to energy technologies.

The scientist's research topics include:

  • Fuel Cells and Related Materials
  • Electrocatalysts for Energy Conversion
  • Advanced battery technologies research
  • CO2 Reduction Techniques and Catalysts
  • Ionic liquids properties and applications
  • Advanced Battery Materials and Technologies
  • Advancements in Battery Materials

Li Xiao has published frequently in several scientific journals, with notable recurring venues including:

  • Journal of Power Sources
  • SSRN Electronic Journal
  • Angewandte Chemie International Edition
  • Journal of the American Chemical Society
  • ACS Applied Energy Materials

Among their recent research outputs are the following papers:

  • "Electrocatalysis in Alkaline Media and Alkaline Membrane-Based Energy Technologies", 2022, Chemical Reviews
  • "Highly Selective Reduction of CO2 to C2+ Hydrocarbons at Copper/Polyaniline Interfaces", 2020, ACS Catalysis
  • "Bifunctional ionomers for efficient co-electrolysis of CO2 and pure water towards ethylene production at industrial-scale current densities", 2022, Nature Energy
  • "Recent progress of emerging cathode materials for sodium ion batteries", 2021, Materials Chemistry Frontiers
  • "Review on strategies for improving the added value and expanding the scope of CO2 electroreduction products", 2024, Chemical Society Reviews

Frequent collaborators in Li Xiao's research include:

  • Lin Zhuang
  • Gongwei Wang
  • Juntao Lu
  • Meixue Hu
  • Wenzheng Li

Best Publications

  • Electrocatalysis in Alkaline Media and Alkaline Membrane-Based Energy Technologies.

    Unknown

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

    Ying Wang;Gongwei Wang;Guangwei Li;Bing Huang

  • Constructing ionic highway in alkaline polymer electrolytes

    Jing Pan;Chen Chen;Yao Li;Lei Wang

  • Activating Pd by morphology tailoring for oxygen reduction.

    Li Xiao;Lin Zhuang;Yi Liu;Juntao Lu

  • An alkaline polymer electrolyte CO2 electrolyzer operated with pure water

    Zhenglei Yin;Hanqing Peng;Xing Wei;Huan Zhou

  • Alkaline polymer electrolyte fuel cells stably working at 80 °C

    Hanqing Peng;Qihao Li;Meixue Hu;Li Xiao

  • Highly Selective Reduction of CO2 to C2+ Hydrocarbons at Copper/Polyaniline Interfaces

    Xing Wei;Zhenglei Yin;Kangjie Lyu;Zhen Li

  • 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

  • First implementation of alkaline polymer electrolyte water electrolysis working only with pure water

    Li Xiao;Shuai Zhang;Jing Pan;Cuixia Yang

  • Pt Skin on AuCu Intermetallic Substrate: A Strategy to Maximize Pt Utilization for Fuel Cells

    Gongwei Wang;Bing Huang;Li Xiao;Zhandong Ren

  • Study on the reduction roasting of spent LiNi x Co y Mn z O 2 lithium-ion battery cathode materials

    Pengcheng Liu;Li Xiao;Yiwei Tang;Yifeng Chen

  • 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

  • Recovering valuable metals from LiNixCoyMn1-x-yO2 cathode materials of spent lithium ion batteries via a combination of reduction roasting and stepwise leaching

    Pengcheng Liu;Li Xiao;Yifeng Chen;Yiwei Tang

  • High-Loading Intermetallic Pt3Co/C Core–Shell Nanoparticles as Enhanced Activity Electrocatalysts toward the Oxygen Reduction Reaction (ORR)

    Yin Xiong;Li Xiao;Yao Yang;Francis J. DiSalvo

  • 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

  • The Comparability of Pt to Pt-Ru in Catalyzing the Hydrogen Oxidation Reaction for Alkaline Polymer Electrolyte Fuel Cells Operated at 80 °C.

    Qihao Li;Hanqing Peng;Yingming Wang;Li Xiao

  • Interface-Enhanced Catalytic Selectivity on the C2 Products of CO2 Electroreduction

    Zhen Li;Zhen Li;Yao Yang;Zhenglei Yin;Xing Wei

  • High-Generation Second-Order Nonlinear Optical (NLO) Dendrimers: Convenient Synthesis by Click Chemistry and the Increasing Trend of NLO Effects†

    Zhong'an Li;Wenbo Wu;Qianqian Li;Gui Yu

  • A completely precious metal–free alkaline fuel cell with enhanced performance using a carbon-coated nickel anode

    Unknown

  • A conjugated hyperbranched polymer constructed from carbazole and tetraphenylethylene moieties: convenient synthesis through one-pot “A2 + B4” Suzuki polymerization, aggregation-induced enhanced emission, and application as explosive chemosensors and PLEDs

    Wenbo Wu;Shanghui Ye;Lijin Huang;Li Xiao

  • Porous Fe2O3 Modified by Nitrogen-Doped Carbon Quantum Dots/Reduced Graphene Oxide Composite Aerogel as a High-Capacity and High-Rate Anode Material for Alkaline Aqueous Batteries

    Xiaoru Yun;Jingying Li;Xianhong Chen;Han Chen

  • Spatially Resolved Quantification of the Surface Reactivity of Solid Catalysts.

    Bing Huang;Li Xiao;Juntao Lu;Lin Zhuang

Frequent Co-Authors

Lin Zhuang
Lin Zhuang Wuhan University
Yirong Zhu
Yirong Zhu Hunan University of Technology
Héctor D. Abruña
Héctor D. Abruña Cornell University
Ying Wang
Ying Wang Tongji University
Wei Liu
Wei Liu Wuhan University
Jingui Qin
Jingui Qin Wuhan University
Jiangfeng Qian
Jiangfeng Qian Wuhan University
Gui Yu
Gui Yu Chinese Academy of Sciences
Lei Fu
Lei Fu Wuhan University
Qianqian Li
Qianqian Li Wuhan University

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