黄浩,博士,讲师。主要研究方向包括半导体异质结的可控构建,纳米催化材料的制备与光催化性能优化,光催化有机污染物降解路径与机理研究等。近年来,以第一作者在Journal of Materials Chemistry A、Separation and Purification Technology、Inorganic Chemistry、Applied Surface Science等学术期刊发表SCI收录论文8篇。主持山东省自然科学基金青年项目1项,聊城大学博士科研启动基金1项。
一、代表性教研、科研项目:
[1] 山东省自然科学基金青年项目C类, 全天候 h-WO3/BiOXO3 2D/2D 异质结光 催化剂的可控构筑及其催化降解性能增强机制(ZR2025QC1865Z), 2026/01-2028/12, 10万元,主持.
[2] 聊城大学博士科研启动基金项目, 光-暗催化活性匹配的二维六方相WO3基异质结的原位构建及其全天候降解抗生素性能研究(X2026003), 2026/04-2028/10, 20万元, 主持.
二、代表性获奖:
无
三、代表性论文:
[1] Hao Huang, Hui-Long Wang, Shao-Bo Shi, Wen-Feng Jiang. In-situ fabrication of AgI/AgnMoxO3x+n/2/g-C3N4 ternary composite photocatalysts for benzotriazole degradation: Tuning the heterostructure, photocatalytic activity and photostability by the degree of molybdate polymerization. Separation and Purification Technology, 2023, 307: 122874. (SCI一区,IF:9.0)
[2] Hao Huang, Hui-Long Wang, Qing-Yu Gong, Wen-Feng Jiang. One-step synthesis of a diverting erythrocyte-like heterojunction and the augmented activity of wastewater treatment: Morphology modulation, theoretical calculations and mechanism explanation. Separation and Purification Technology, 2024, 342:127049. (SCI一区,IF:9.0)
[3] Hao Huang, Hui-Long Wang, Wen-Feng Jiang. Solar-driven Bi6O5(OH)3(NO3)5(H2O)3/Bi2WO6 heterojunction for efficient degradation of organic pollutants: Insights into adsorption mechanism, charge transfer and degradation pathway. Separation and Purification Technology, 2024, 349:127747. (SCI一区,IF:9.0)
[4] Rong Yan#, Hao Huang#, Hui-Long Wang, Shuo Chu, Wen-Feng Jiang. Facile in-situ construction of Z-scheme Bi6O5(OH)3(NO3)5•3H2O/Bi5O7I binary heterojunction composites for superior photocatalytic degradation of diverse persistent organic pollutants in water. Separation and Purification Technology, 2022, 299: 121766. (SCI一区,IF:9.0)
[5] Hao Huang, Hui-Long Wang, Wen-Feng Jiang. Correction and new understanding of the reactivity of illuminated tungsten trioxide in the dark: antecedents and consequences of photo-storage electrons triggering Fenton reactions. Journal of Materials Chemistry A, 2024, 12, 7257-7271. (SCI二区,IF:9.5)
[6] Hao Huang, Yu-Xuan Li, Hui-Long Wang, Wen-Feng Jiang. In situ fabrication of ultrathin-g-C3N4/AgI heterojunctions with improved catalytic performance for photodegrading rhodamine B solution. Applied Surface Science, 2021 , 538: 148132. (SCI二区,IF:6.9)
[7] Hao Huang, Yu-Xuan Li, Guo-Jing Jiang, Hui-Long Wang, Wen-Feng Jiang. In-situ construction of dye-sensitized BiOCl/Rutile-TiO2 nanorod heterojunctions with highly enhanced photocatalytic activity for treating persistent organic pollutants. Inorganic Chemistry, 2021. 60: 17325-17338. (SCI二区,IF:4.7)
四、代表性发明专利:
无
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