师资队伍
动力工程及工程热物理(学术型)/动力工程(专业型)
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周普阳

周普阳,男,汉族,19958月出生,湖北荆州人,中共党员,工学博士,校聘副教授,硕士生导师。主要从事光催化材料的设计与合成、水体有机污染物去除等方面的科研工作。近年来,主持或参与科研项目3项,以第一作者在Applied Catalysis B: Environment and EnergyChemical Engineering JournalColloids and Surfaces A: Physicochemical and Engineering Aspects等国内外著名期刊上发表学术论文7篇。

主要科研情况(近五年):

1)河南理工大学博士基金项目,NO. 760407/054,改性氮化碳材料光催化降解水体污染物的机理研究,2025.04−2028.12,在研,主持;

2)市重点研发计划,NO. GY2022024,碳基气凝胶复合材料光电催化分解水制氢关键技术研发,2022.07−2024.07,已结题,主要完成人;

3)国家自然科学基金项目,NO. 22076068Zp-OCN/磁性中空纳米笼光催化体系协同活化PMS去除新型烟碱类农药,2021.01−2024.12,已结题,参与。

主要论文情况(近五年):

(1) Puyang Zhou, Yuanguo Xu*, Meng Xie**, et al., Nitrogen-defect-modified g-C3N4/BaFe12O19 S-scheme heterojunction photocatalyst with enhanced advanced oxidation technology synergistic photothermal degradation ability of antibiotic: Insights into performance, electron transfer pathways and toxicity, Applied Catalysis B: Environmental 343 (2024) 123485.

(2) Puyang Zhou, Meng Xie*, Yuanguo Xu*, et al., Alkaline Earth Metal Intercalated into Carbon Nitride Nanosheets for Photocatalytic Peroxymonosulfate Removal of Refractory Organic Pollutants, ACS Applied Nano Materials, 2023, 6, 16034−16045.

(3) Puyang Zhou, Meng Xie*, Yuanguo Xu*, et al., Greigite nanosheet modified carbon nitride with boosted photo-Fenton-like enrofloxacin degradation: Performance and toxicity evaluation, Colloids and Surfaces A: Physicochemical and Engineering Aspects 686 (2024) 133380.

(4) Puyang Zhou, Meng Xie*, Yuanguo Xu*, et al., Ag2O modified magnetic BaFe12O19/C3N4 photocatalysts with enhanced antibiotic removal: Photocatalytic mechanism and toxicity evaluation, Advanced Powder Technology 34 (2023) 104015.

(5) Zeyang Sun, Puyang Zhou, Jia Yan*, Yuanguo Xu*, et al., S-scheme heterojunction FeS2/BaFe12O19 by in-situ sulfurization strategy for boosting photocatalytic degradation activity, Separation and Purification Technology 364 (2025) 132607.

(6) Yan Wang, Lianxin Li, Puyang Zhou, Meng Xie*, Yuanguo Xu*, et al., Aeration-Free Photo-Fenton-Like Reaction Mediated by Heterojunction Photocatalyst toward Efficient Degradation of Organic Pollutants, Angewandte Chemie International Edition, 2025, 64, e202419680.

E-mailpuyangzhou@hpu.edu.cn