Xudong Hu | Environmental | Best Researcher Award
Dr. Xudong Hu , Henan University , China.
Dr. Xudong Huย is a passionate researcher dedicated to advancing sustainable technologies for hydrogen production, water treatment, and environmental remediation ๐ง๐ฌ. With a Bachelorโs degree from Liaoning Technical University ๐ and currently pursuing his Masterโs at Henan University ๐, he has contributed significantly to catalyst design and pollutant degradation ๐งช๐. As the first or co-first author of multiple high-impact publications ๐, Xudong blends computational and experimental methods to tackle environmental challenges. His pioneering work has received attention in journals like Angewandte Chemie and International Journal of Hydrogen Energy ๐. He’s driven by innovation, collaboration, and scientific impact ๐.
Publication Profile
Scopus
Education & Experience
๐ Bachelor of Science โ Liaoning Technical University (2019.09 ~ 2023.06)
๐ Master of Science (Ongoing) โ Henan University (2023.09 ~ 2026.09)
๐ฌ Research Experience
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Hydrogen production via advanced catalysis โก
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Photocatalytic degradation of persistent organic pollutants โข๏ธ
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Peracetic acid activation and water purification ๐ฆ
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Multifunctional electrocatalyst design and optimization โ๏ธ
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Industrial wastewater treatment and recycling ๐
Suitability Summary
Xudong Hu is a highly deserving candidate for the Best Researcher Award ๐ , given his outstanding contributions to sustainable energy technologies and environmental remediation through advanced catalyst development and water treatment innovation ๐ฑโ๏ธ. As a dynamic young scientist from China ๐จ๐ณ, currently pursuing his M.Sc. at Henan University and holding a B.Sc. from Liaoning Technical University, Xudong has already made a profound impact on the scientific community through first-author and co-first-author publications in high-impact journals such as Angewandte Chemie, International Journal of Hydrogen Energy, and Chemical Engineering Science ๐๐.
Professional Developmentย
Xudong Hu continuously strives to sharpen his research skills through interdisciplinary exploration and collaboration ๐ค. He integrates theory-guided design ๐ง with experimental validation ๐ฌ, exploring diatomic site catalysts, heterostructures, and electron transport enhancement in environmental systems ๐. By publishing in globally recognized journals ๐ and contributing as a corresponding author โ๏ธ, he demonstrates strong leadership and scientific communication skills. His focus on clean energy, sustainable development, and advanced catalysis keeps him aligned with global environmental goals ๐ฑ๐. Actively attending conferences, workshops, and forums keeps him updated with cutting-edge innovations in chemical and environmental engineering ๐งช๐ผ.
Research Focusย
Xudong Huโs research primarily targets clean energy and environmental remediation ๐โก. His focus spans hydrogen production via seawater electrolysis, photocatalytic degradation of persistent pollutants, and electrocatalyst design for water treatment ๐งโ๏ธ. He is deeply engaged in atomic-level catalysis, heterostructure synergy, and peracetic acid activation to address pressing environmental issues through smart chemical solutions ๐๐งช. By combining computational simulations with experimental validation ๐ฅ๏ธ๐ฌ, Xudong contributes novel insights to the field of green chemistry and sustainable energy technologies. His work reflects a multidisciplinary approach, merging materials science, chemistry, and environmental engineering to develop practical, scalable solutions โป๏ธ๐.
Awards & Honorsย
๐ First Author & Corresponding Author โ Angewandte Chemie, 2025
๐ First Author โ International Journal of Hydrogen Energy, 2024
๐ฅ Co-First Author โ Chemical Engineering Science, 2025
๐ Recognition for Innovation in Environmental Catalysis
๐๏ธ Contributions to Advanced Electrocatalytic Systems for Water Purification
Publication Top Notes
1๏ธโฃ “Theory-guided Design of Surface-Enhanced Ni-Mn Diatomic Site Catalysts for Efficient Seawater Electrolysis via the Degradation of High Ionization Potential Organic Pollutants” โ Angewandte Chemie, ๐ 2025 | ๐๏ธ First & Corresponding Author | ๐ Cited by: 1 | ๐ DOI ๐โก๐ฌ
2๏ธโฃ “Atomic catalysis meets heterostructure synergy: Unveiling the trifunctional efficacy of transitionMetal@WS2/ReSe2” โ International Journal of Hydrogen Energy, ๐ 2024 | ๐๏ธ First Author | ๐ Cited by: 1 | ๐ DOI โ๏ธ๐ก๐
3๏ธโฃ “Fe-Enriched electron transport in CuFeS2 Catalyzed peracetic acid for efficient dipyrone Degradation: Computational and experimental Insights” โ Chemical Engineering Science, ๐ 2025 | ๐๏ธ Co-First Author | ๐ Cited by: 1 | ๐ DOI ๐งช๐ง ๐ง