段有雨,副教授,硕士生导师,现任重庆交通大学材料分析测试中心副主任,交通新能源材料与装备研究院副院长。主要从事新能源材料与器件方面的研究。近年来主持国家级和省部级项目4项,校内高层次人才启动经费1项,企业委托项目1项。参研国家重点研发计划等项目10项。担任Rare Metals、Chinese Journal of Structural Chemistry、CleanMat、Energy Lab、MetalMat期刊青年编委和Coordination Chemistry Reviews, Applied Catalysis B: Environmental、Separation and Purification Technology,ACS Applied Nano Materials,Applied catalysis等多个SCI 国际期刊审稿人。近年来在Adv. Mater.、Adv. Energy Mater.、Adv. Funct. Mater.等国际期刊发表SCI论文60余篇,其中第一作者/通讯作者36余篇。申请国家发明专利13项,出版专著1部。获川渝科学技术大会一等奖(排1),2024年度全球卓越工程师大赛—优秀成果转化奖(排1)。
研究方向: (1) 绿色燃料光电催化转化材料开发;(2) 催化治理环境污染物(NOx、 VOCs); (3) 镁(钠)离子二次电池的正负极材料及电解液的开发与设计。
联系方式:E-mail:youyuduan@cqjtu.edu.cn。课题组经费充足,长期招收硕士研究生,同时也欢迎对科研感兴趣的本科生加入课题组开展科学研究。
(1) Youyu Duan, Yang Wang, Weixuan Zhang, Jiangwei Zhang, Chaogang Ban, Yajie Feng, Bin Zhang, Hanjun Zou, Ang Li, Kaiwen Wang, Xu Zhang, Xiaodong Han, Liyong Gan*, Guang Han*, Xiaoyuan Zhou*, Large-scale synthesis of high-loading single metallic atom catalysts by a metal coordination route. Advanced Materials. 2024, 2404900. (SCI一区,IF=29.4)
(2) Youyu Duan#, Yang Wang#, Liyong Gan, Jiazhi Meng, Yajie Feng, Kaiwen Wang, Kai Zhou, Cong Wang, Xiaodong Han*, Xiaoyuan Zhou*. Amorphous carbon nitride with three coordinate nitrogen (N3C) vacancies for exceptional NOx abatement in visible light. Advanced Energy Materials, 2021, 11(19): 2004001. (SCI一区,IF=29.698)
(3) Youyu Duan#, Yang Wang#, Weixuan Zhang, Jiangwei Zhang, Chaogang Ban, Danmei Yu, Liyong Gan*, Kai Zhou, Jinjin Tang, Xiaoping Tao*, Xu Zhang, Xiaodong Han, Xiaoyuan Zhou*. Simultaneous CO2 and H2O activation via integrated Cu single atom and N vacancy dual-site for enhanced CO photo-production. Advanced Functional Materials, 2023: 2301729. (SCI一区,IF= 19.924)
(4) Youyu Duan, Li Liang, Kangle Lv*, Qin Li, Mei Li*. TiO2 faceted nanocrystals on the nanofibers: Homojunction TiO2 based Z-scheme photocatalyst for air purification. Applied Surface Science, 2018, 456: 817-826. (SCI一区,IF= 7.392)
(5) Youyu Duan, Xiaofang Li*, Kangle Lv*, Li Zhao, Yi Liu. Flower-like g-C3N4 assembly from holy nanosheets with nitrogen vacancies for efficient NO abatement. Applied Surface Science, 2019, 492: 166-176. (SCI一区,IF= 7.392)
(6) Jiazhi Meng#, Youyu Duan#, Shaojie Jing, Jiangping Ma, Kaiwen Wang, Kai Zhou, Chaogang Ban, Yang Wang, Bihao Hu, Danmei Yu*, Liyong Gan*, Xiaoyuan Zhou*, Facet junction of BiOBr nanosheets boosting spatial charge separation for CO2 photoreduction. Nano Energy, 2022, 92: 106671. (SCI一区,IF=19.069)
(7) Chaogang Ban#, Youyu Duan#, Yang Wang, Jiangping Ma, Kaiwen Wang, Jiazhi Meng, Xue Liu, Cong Wang, Xiaodong Han, Guozhong Cao, Liyong Gan*, Xiaoyuan Zhou*, Isotype heterojunction-boosted CO2 photoreduction to CO. Nano-Micro Letters, 2022, 14(1): 1-13. (SCI一区,IF=23.655)
(8) Bangfu Chen#, Youyu Duan#, Shuang Chen, Yuhan Li*, Yongfa Zhu*, The synergistic activation of small molecule and free radical for the deep mineralization of mixed VOCs. ACS Catalysis, 2024, 14: 3966-3976. (SCI一区,IF=12.90)
(9) Yuhan Li, Ziteng Ren, Miaoli Gu, Youyu Duan*, Wei Zhang*, Kangle Lv, Synergistic effect of interstitial C doping and oxygen vacancies on the photoreactivity of TiO2 nanofibers towards CO2 reduction, Applied Catalysis B: Environmental, 2022, 317, 121773. (SCI一区,IF=24.319)
(10) Yuhan Li, Bangfu Chen, Ping Ouyang, Youyu Duan*, Wee-Jun Ong*, Engineering ZnSn(OH)6 with ternary active sites-directed hydroxyl vacancies for robust deep C6H6 photo-oxidation: Experiment and DFT calculations, Chemical Engineering Journal, 2023, 451, 138695. (SCI一区,IF=16.744)
(11) Yuhan Li, Zhengjiang He, Li Liu, Yan Jiang, Wee-Jun Ong, Youyu Duan*, Wingkei Ho*, Fan Dong*. Inside-and-out modification of graphitic carbon nitride (g-C3N4) photocatalysts via defect engineering for energy and environmental science. Nano Energy, 2022: 108032. (SCI一区,IF=19.069)
(12) Ziteng Ren, Bangfu Chen, Yuhan Li*, Sónia AC Carabineiro, Youyu Duan*, Fan Dong, Remarkable formaldehyde photo-oxidation efficiency of Zn2SnO4 co-modified by Mo doping and oxygen vacancies. Separation and Purification Technology, 2023: 123202. (SCI一区,IF=9.136)
(13) Bangfu Chen, Ping Ouyang, Yuhan Li*, Youyu Duan*, Kangle Lv, Fan Dong, Creation of an internal electric field in SnO2@ZnS-ZnSn(OH)6 dual-type-II heterojunctions for efficient NO photo-oxidation, Science China Materials, 2022, doi: 10.1007/s40843-022-2288-0. (SCI一区,IF=8.64)
(14) Xiaoyan Li, Rui Zhao, Hongfang Li, Jing Jiang, Lunhong Ai, Xuejuan Cao, Juanli Liu, Hanjun Zou*, Youyu Duan*. Constructing the multilayer O-g-C3N4@W18O49 heterostructure for deeply photocatalytic oxidation NO. Separation and Purification Technology, 2023, 307: 122841. (SCI一区,IF=9.136)
(15) Yuhan Li, Ziteng Ren, Zhengjiang He, Ping Ouyang, Youyu Duan*, Wendong Zhang*, Kangle Lv, Fan Dong*, Crystallinity-defect matching relationship of g-C3N4: Experimental and theoretical perspectives, Green Energy & Environment, 2024, 9(4): 623-658. (SCI一区,IF=12.781)
(16) Zhengjiang He, Bangfu Chen, Yuhan Li*, Ping Ouyang, Youyu Duan*, Fan Dong, Deep NO oxidation in Zn2SnO4 by dual-anionic-defects engineering. Separation and Purification Technology, 2023: 123886. (SCI一区,IF=9.136)
(17) Yuhan Li, Min Zhang, Bangfu Chen, Ping Ouyang, Youyu Duan*, Kangle Lv , Fan Dong*, An ultrafast carrier dynamics system from SnO2 QDs and oxygen vacancies co-modified Zn2SnO4 for deeply photocatalytic oxidation of NO, Journal of Materials Science & Technology, 2023, 165: 85-93. (SCI一区,IF= 10.319)
(18) Bangfu Chen, Zheyong Meng, Pin Ouyang, Youyu Duan*, Yuhan Li*, Wanjun Wang, Fan Dong, S2- doping inducing self-adapting dual anion defects in ZnSn(OH)6 for highly efficient photoactivity. Applied Catalysis B: Environmental, 2023, 338: 123093. (SCI一区,IF=24.319)
(19) Yuhan Li, Bangfu Chen, Carabineiro, Sonia A. C., Youyu Duan*, Tan, Ping*, Wingking Ho*, Fan Dong, Enhancing visible-light-driven NO oxidation through molecular-level insights of dye-loaded sea sands. Rare Metal, 2024, 43(2): 543-554. (SCI一区,IF=6.318)
(20) Xinyuan Song, Hao Ma, Yuhan Li*, Youyu Duan*, Wanjun Wang, Fan Dong, Utilizing Si-modulated ZnSn(OH)6 electric fields to construct Si-Sn3+ charge-transfer bridges for efficient deep oxidation of C7H8, Applied Catalysis B: Environment and Energy, 2025, 365, 124955. (SCI一区,IF=24.319)