黄美榕

职 称: 副教授

学 历: 博士研究生

电子邮件: hmr@fzu.edu.cn

研究方向: 1. 钙钛矿氮氧化物材料光催化水分解 2. 高压合成氮氧化物材料(光)热催化合成氨 3. 氮氧氢化物低温低压合成氨

教育工作经历 (Education and working experiences)

2023.08-至今,福州大学化学学院、能源与环境国家重点实验室,副教授

2021.07-2023.08,清华大学材料学院,博士后(合作导师:朱宏伟教授)

2016.09-2021.07,清华大学材料学院,博士(导师:朱宏伟教授、北京大学李志宏教授)

2012.09-2016.07,中国石油大学(北京)理学院,本科

科研简介 (Scientific research)

主要从事BiVO4、钙钛矿氮氧化物等材料的光(电)催化分解水研究,开展氮氧化物及氮氧氢化物的低温低压合成氨研究。目前以第一作者及通讯作者在Chem. Soc. Rev.、Adv. Energy Mater.、Nano Energy、ACS Catal.、Chem. Eng. J.等国际重要学术刊物上发表论文十余篇。

科研项目 (Scientific research projects)

福建省自然科学基金创青项目(2024.11-2027.11)

福州大学科研启动基金

获奖情况 (awards & honors)

2023年 福建省C类高层次人才

2024年 福州大学“杨鸿耀奖教金”

代表性论文 (Representative papers)

1.X. R. Geng, R. F. Zhang, P. Y. Zhang, X. Y. Yuan, C. Yang, Y. D. Hou*, J. S. Zhang,M. R. Huang*. Photoelectrochemical cell with Co3O4/BiVO4 photoanode and CoFe2O4 cathode: An efficient persulfate activation system for organic pollutants degradation.J. Environ. Chem. Eng., 2025, 13, 116073.

2.M. Li, J. Y. Zhang, L. F. Liang,M. R. Huang*, Y. D. Hou, M. Anpo, J. C. Yu, J. S. Zhang*, X. C. Wang*. In-situ generation of synergistic Lewis acid-base sites on phenolic resins for enhanced photocatalytic aerobic oxidation reactions.App. Catal. B: Environ., 2025, 372, 125296.

3.M. Li#,M. R. Huang#, Z. Lin, Y. D. Hou, M. Anpo, J. C. Yu, J. S. Zhang*, X. C. Wang*. Phenolic Resin with an Optimized Donor−Acceptor Architecture for Photocatalytic Aerobic Oxidation.ACS Catal., 2024 (14): 17266-17632.

4.Z. W. Huang, S. F. Guo, W. Chen,M. R. Huang*, J. W. Ni, Q. Q. Zhou, M. S. Tian, X. M. Wu, H. W. Zhao, H. Z. Shen, W. Li, G. H. Jing*. Tailoring Valence State of V in V-Mo Atomically Dispersed Ensemble Enables Exceptional NH4HSO4 Poisoning Resistance for NH3-SCR Reaction.Chem. Eng. J., 2023 (464): 142540.

5.M. R. Huang, S. T. Wang, H. W. Zhu*. A Comprehensive Machine Learning Strategy for Designing High-performance Photoanode Catalysts.J. Mater. Chem. A, 2023 (11): 21619-21627.

6.M. R. Huang, Z. C. Li, H. W. Zhu*. Recent Advances of Graphene and Related Materials in Artificial Intelligence.Adv. Intell. Syst., 2022: 2200077.

7.M. R. Huang, W. Z. He, Z. P. Xu, H. W. Zhu*. Enhanced Catalytic Mechanism of Twin-Structured BiVO4.J. Phys. Chem. Lett., 2021 (12): 10610-10615.

8.M. R. Huang, W. H. Lei, M. Wang, S. J. Zhao, C. L. Li, M. R. Wang, H. W. Zhu*. Large Area High-performance Bismuth Vanadate Photoanode for Efficient Solar Water Splitting.J. Mater. Chem. A, 2020 (8): 3845-3850.

9.M. R. Huang, Z. W. Huang, H. W. Zhu*. Excellent Stability of Molecular Catalyst/BiVO4 Photoanode in Borate Buffer Solution.Nano Energy, 2020 (70): 104487.

10.M. R. Huang, C. L. Li, L. Zhang, Q. Chen, Z. Zhen, Z. H. Li*, H. W. Zhu*. Twin Structure in BiVO4 Photoanodes Boosting Water Oxidation Performance through Enhanced Charge Separation and Transport.Adv. Energy Mater., 2018 (8): 1802198.

11.G. K. Zhao#, X. M. Li#,M. R. Huang#, Z. Zhen, Y. J. Zhong, Q. Chen, X. L. Zhao, Y. J. He, R. R. Hu, T. T. Yang, R. J. Zhang, C. L. Li, J. Kong, J. B. Xu*, R. S. Ruoff*, H. W. Zhu*. The Physics and Chemistry of Graphene-on-Surfaces.Chem. Soc. Rev., 2017 (46): 4417-4449.

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