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Materials Science

D-Index
49
Citations
7977
World Ranking
10607
National Ranking
2965

Overview

Kui Xie is affiliated with the Chinese Academy of Sciences in China and has an extensive publication record in materials science and chemical engineering. Their research focuses primarily on catalytic processes, electrocatalysts, and advanced materials for energy applications.

The scientist's work covers several main fields of study:

  • Materials Science
  • Chemical Engineering

Within these, Kui Xie has contributed to various subfields:

  • Materials Chemistry
  • Catalysis
  • Renewable Energy, Sustainability and the Environment
  • Electrical and Electronic Engineering
  • Inorganic Chemistry

Their primary research topics include:

  • Catalytic Processes in Materials Science
  • Catalysis and Oxidation Reactions
  • Advancements in Solid Oxide Fuel Cells
  • Electrocatalysts for Energy Conversion
  • Ammonia Synthesis and Nitrogen Reduction
  • Advanced Photocatalysis Techniques
  • Electronic and Structural Properties of Oxides

Kui Xie has published numerous papers in prominent journals. Some recent examples include:

  • High-temperature electrocatalysis and key materials in solid oxide electrolysis cells, 2020, Journal of Energy Chemistry
  • Electrochemical Dehydrogenation of Ethane to Ethylene in a Solid Oxide Electrolyzer, 2020, ACS Catalysis
  • Activating Lattice Oxygen at the Twisted Surface in a Mesoporous CeO2 Single Crystal for Efficient and Durable Catalytic CO Oxidation, 2020, Angewandte Chemie International Edition
  • Dry Reforming of CH4/CO2 by Stable Ni Nanocrystals on Porous Single-Crystalline MgO Monoliths at Reduced Temperature, 2021, Angewandte Chemie International Edition
  • An Efficient Symmetric Electrolyzer Based On Bifunctional Perovskite Catalyst for Ammonia Electrolysis, 2021, Advanced Science

The frequent publication venues include:

  • Angewandte Chemie International Edition
  • Angewandte Chemie
  • New Journal of Chemistry
  • International Journal of Hydrogen Energy
  • Energy & Fuels

Collaborations have been a notable part of Kui Xie's scientific output, with frequent co-authors comprising:

  • Lingting Ye
  • Fangyuan Cheng
  • Xiuyun Duan
  • Guoming Lin
  • Jie Zhang

Best Publications

  • High‐Temperature CO 2 Electrolysis in Solid Oxide Electrolysis Cells: Developments, Challenges, and Prospects

    Yuefeng Song;Yuefeng Song;Xiaomin Zhang;Kui Xie;Guoxiong Wang

  • Enhancing CO2 electrolysis through synergistic control of non-stoichiometry and doping to tune cathode surface structures

    Lingting Ye;Minyi Zhang;Ping Huang;Guocong Guo

  • Self-doped SrTiO3−δ photocatalyst with enhanced activity for artificial photosynthesis under visible light

    Kui Xie;Naoto Umezawa;Naoto Umezawa;Ning Zhang;Pakpoom Reunchan

  • Graphene sheets as anode materials for Li-ion batteries: preparation, structure, electrochemical properties and mechanism for lithium storage

    H. F. Xiang;H. F. Xiang;Z. D. Li;K. Xie;J. Z. Jiang

  • Direct synthesis of methane from CO2/H2O in an oxygen-ion conducting solid oxide electrolyser

    Kui Xie;Kui Xie;Yaoqing Zhang;Guangyao Meng;John T. S. Irvine

  • Direct electrolysis of CO2 using an oxygen-ion conducting solid oxide electrolyzer based on La0.75Sr0.25Cr0.5Mn0.5O3 − δ electrode

    Shanshan Xu;Shisong Li;Weitang Yao;Dehua Dong

  • Highly efficient electrochemical reforming of CH4/CO2 in a solid oxide electrolyser

    Jinhai Lu;Changli Zhu;Changchang Pan;Wenlie Lin

  • Remarkable chemical adsorption of manganese-doped titanate for direct carbon dioxide electrolysis

    Wentao Qi;Yun Gan;Di Yin;Zhenyu Li

  • Electrochemical reduction of CO2 in a proton conducting solid oxide electrolyser

    Kui Xie;Kui Xie;Yaoqing Zhang;Guangyao Meng;John T. S. Irvine

  • Electrochemical conversion of methane to ethylene in a solid oxide electrolyzer.

    Changli Zhu;Shisheng Hou;Xiuli Hu;Jinhai Lu

  • A facile synthesis of mesoporous Co3O4/CeO2 hybrid nanowire arrays for high performance supercapacitors

    Jiewu Cui;Xinyi Zhang;Liang Tong;Jinbao Luo

  • Composite fuel electrode La0.2Sr0.8TiO3−δ–Ce0.8Sm0.2O2−δ for electrolysis of CO2 in an oxygen-ion conducting solid oxide electrolyser

    Yuanxin Li;Jianer Zhou;Dehua Dong;Yan Wang

  • Electrolysis of H2O and CO2 in an oxygen-ion conducting solid oxide electrolyzer with a La0.2Sr0.8TiO3+δ composite cathode

    Shisong Li;Yuanxin Li;Yun Gan;Kui Xie

  • High-temperature electrocatalysis and key materials in solid oxide electrolysis cells

    Lingting Ye;Kui Xie

  • An ammonia fuelled SOFC with a BaCe0.9Nd0.1O3−δ thin electrolyte prepared with a suspension spray

    Kui Xie;Qianli Ma;Bin Lin;Yinzhu Jiang

  • Composite Oxygen Electrode Based on LSCF and BSCF for Steam Electrolysis in a Proton-Conducting Solid Oxide Electrolyzer

    Shisong Li;Kui Xie

  • Kinetics and Thermodynamics of Asphaltene Adsorption on Metal Surfaces: A Preliminary Study†

    Kui Xie and;Kunal Karan

  • Pouous TiO 2 nanofibers decorated CdS nanoparticles by SILAR method for enhanced visible-light-driven photocatalytic activity

    Unknown

  • Enhanced carbon dioxide electrolysis at redox manipulated interfaces

    Wenyuan Wang;Lizhen Gan;Lizhen Gan;John P. Lemmon;Fanglin Chen

  • A new stable BaCeO3-based proton conductor for intermediate-temperature solid oxide fuel cells

    Kui Xie;Ruiqiang Yan;Xiaorui Chen;Dehua Dong

  • Activating Lattice Oxygen at the Twisted Surface in a Mesoporous CeO2 Single Crystal for Efficient and Durable Catalytic CO Oxidation

    Yongchun Xiao;Hao Li;Kui Xie

Frequent Co-Authors

Yucheng Wu
Yucheng Wu Hefei University of Technology
Guangyao Meng
Guangyao Meng University of Science and Technology of China
Shanwen Tao
Shanwen Tao University of Warwick
Hao Li
Hao Li Zhejiang University
John T. S. Irvine
John T. S. Irvine University of St Andrews
Fanglin Chen
Fanglin Chen University of South Carolina
Chun-Zhu Li
Chun-Zhu Li Curtin University
Xun Hu
Xun Hu University of Jinan
Huanting Wang
Huanting Wang Monash University
Naoto Umezawa
Naoto Umezawa Samsung (South Korea)

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