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Name:Zhaoyang Fan
Birthday: 1990-12
Professional Title:lecturer
Department:applied chemistry
Education:doctor
Dr. Supervisor/Ms. Supervisor:
Adress:chemical building
Email:fanzhaoyang@tyut.edu.cn
Biography
1.主讲课程
本科生课程:普通化学
2.教改成果(课程、教材、论文等)
中国大学MOOC课程《The principle of general chemistry》,参与人
Education and Teaching
1.研究方向
(1)大气污染控制化学
(2)环境催化
2.学术荣誉及兼职
(1)Catalysts期刊客座编辑
(2)Environmental Science & Technology, Catalysis Science & Technology, Environmental Technology, Catalysts, Nanomaterials, Processes 等期刊审稿人。
3.科研项目(国家级、省部级):
(1)山西省自然科学基金项目(20210302124638),氢键作用对铁钒基脱硝催化剂低温硫酸氢铵分解性能影响及其机制研究,2022/01-2024/12,4万元,主持。
4.代表性论文 (限5篇,时间倒序)
(1)Zhaoyang Fan, Jian-wen Shi,* Cihang Niu, et al. The insight into the role of Al2O3 in promoting the SO2 tolerance of MnOx for low-temperature selective catalytic reduction of NOx with NH3. Chemical Engineering Journal, 2020, 398, 125572.
(2)Zhaoyang Fan,1 Zhenyu Wang,1 Jian-wen Shi,* et al. Charge-redistribution-induced new active sites on (001) facets of α-Mn2O3 for significantly enhanced selective catalytic reduction of NOx by NH3. Journal of Catalysis, 2019, 370, 30-37.
(3)Zhaoyang Fan, Jian-wen Shi,* Chen Gao, et al. Gd-modified MnOx for the selective catalytic reduction of NO by NH3: The promoting effect of Gd on the catalytic performance and sulfur resistance. Chemical Engineering Journal, 2018, 348, 820-830.
(4)Zhaoyang Fan, Jian-wen Shi,* Chen Gao, et al. Rationally designed porous MnOx-FeOx nanoneedles for low-temperature selective catalytic reduction of NOx by NH3. ACS Applied Materials & Interfaces, 2017, 9, 16117-16127.
(5)Zhaoyang Fan, Jin Liang, Wei Yu, et al. Ultrathin NiO nanosheets anchored on a highly ordered nanostructured carbon as an enhanced anode material for lithium ion batteries. Nano Energy, 2015, 16, 152-162.
5.授权专利
丁书江,范昭阳,金属氧/硫化物与有序介孔碳复合储能材料的制备方法, 中国,2017-01,CN103943826A。
Scientific Research