Yuxi Liu | Environmental | Best Researcher Award
Prof. Yuxi Liu, Beijing University of Technology, China.
Dr. Yuxi Liu is a Professor and Ph.D. Supervisor at Beijing University of Technology, specializing in catalytic science for environmental pollutant purification. A recipient of the National Science Fund for Excellent Young Scholars, Dr. Liu is recognized as a Young Top Talent in Beijing and among the World’s Top 2% Scientists (2019-2022). With over 140 SCI-indexed publications cited more than 6,900 times (H-index: 54), he has also authored five books and holds eight national invention patents. Dr. Liu actively contributes as a technical expert in VOCs Pollution Prevention with the China Environmental Protection Association 

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Publication profile
Scopus
Education and Experience
- Professor and Ph.D. Supervisor
Beijing University of Technology - Recipient of National Science Fund for Excellent Young Scholars
- Talent Development Program
Beijing University of Technology - Young Top Talent
Beijing’s High-Level Teacher Team Construction
Suitability For The Award
Dr. Yuxi Liu, a Professor and Ph.D. Supervisor at Beijing University of Technology, is a leading researcher in the field of environmental catalytic science. As a recipient of the Best Researcher Award, Dr. Liu’s groundbreaking work on the catalytic purification of environmental pollutants, combined with his exceptional academic contributions, positions him among the most influential scientists in his field. His prolific research, innovative approaches, and dedication to advancing science make him a highly deserving candidate for this prestigious honor.
Professional Development
Awards and Honors
Publications Top Notes
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“Pretreatment techniques in CO-SCR and NH3-SCR: Status, challenges, and perspectives” (2025) – Journal of Catalysis –
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“Enhanced low-temperature catalytic activity and stability in methane combustion of Pd−CeO2 nanowires@SiO2 by Pt dispersion” (2025) – Applied Catalysis B: Environmental –
Cited by: 1.
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“Bamboo-like MnO2⋅Co3O4: High-performance catalysts for the oxidative removal of toluene” (2025) – Journal of Environmental Sciences (China) –
Cited by: 8.
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“Coupling Photocatalytic Hydrogen Production with Key Oxidation Reactions” (2024) – Angewandte Chemie – International Edition –
Cited by: 4.
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“Mg bulk and surface modification on Ni/Y2Ti2O7 catalyst for dry reforming of methane” (2024) – International Journal of Hydrogen Energy –
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“Enhancing the resistance of single-atom and cluster catalysts in CO-SCR to water, sulfur, and oxygen via structural engineering” (2024) – Chemical Engineering Journal –
Cited by: 2.