师资队伍
专任教师
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杨雨昕 教授

办公室:环境学院 312 电话: 邮箱:yangyx374@nenu.edu.cn 研究方向/负责工作:环境光催化、能源光催化
教育经历

2005.09-2009.06,东北师范大学 城市与环境科学学院 环境科学专业,学士

2009.09-2015.06,东北师范大学 环境学院 环境科学与工程专业,博士

2013.11-2014.11,美国加州大学戴维斯分校 化学学院,联合培养


工作经历

2015.07-2018.06,东北师范大学 环境学院 环境科学专业,讲师

2018.06-2024.06,东北师范大学 环境学院 环境科学专业,副教授

2024.07-至今   东北师范大学 环境学院 环境科学专业,教授

开设课程和编写教材

本科生课程

环境监测、室内环境学、室内环境学实验、环境安全与健康

研究生课程

专业外语、环境污染与控制化学、科学研究方法


主要学术成就、奖励及荣誉

教育部自然科学二等奖(排名第三),2016

吉林省自然科学学术成果奖一等奖(排名第一),2015


主要科研项目

2023.01-2026.12 国家自然科学基金面上基于石墨相氮化碳的高效异相光芬顿体系的构筑及其降解水中有机污染物性能研究”(52270061),项目负责人

2017.01-2019.12 国家自然科学基金青年基金“WO3/g-C3N4复合材料的表界面调控制备及其可见光催化降解溴代阻燃剂性能研究”(51608102),项目负责人


代表性学术成果

代表性论文

(1) Ren, Miao; Zhang, Xueyan; Liu, Yunqing; Yang, Guang; Qin, Lang; Meng, Jiaqi; Guo, Yihang*; Yang, Yuxin*; Interlayer Palladium-Single-Atom-Coordinated Cyano-Group-Rich Graphitic Carbon Nitride for Enhanced Photocatalytic Hydrogen Production Performance, ACS Catalysis, 2022, 12, 5077-5093.

(2) Huo, Yang; Ding, Xuhui; Zhang, Xueyan; Ren, Miao; Sang, Luobin; Wen, Siyu; Song, Daiyu; Yang, Yuxin*; Graphene quantum dot implanted supramolecular carbon nitrides with robust photocatalytic activity against recalcitrant contaminants, Catalysis Science & Technology, 2022, 12, 3937.

(3) Wang, Xinyue; Meng, Jiaqi; Zhang, Xueyan; Liu, Yunqing; Ren, Miao; Yang, Yuxin*; Guo, Yihang*; Controllable Approach to Carbon-Deficient and Oxygen-Doped Graphitic Carbon Nitride: Robust Photocatalyst Against Recalcitrant Organic Pollutants and the Mechanism Insight, Advanced Functional Materials, 2021, 31(20): 2010763.

(4) Meng, Jiaqi; Wang, Xinyue; Liu, Yunqing; Ren, Miao; Zhang, Xueyan; Ding, Xuhui; Guo, Yihang*; Yang, Yuxin*; Acid-induced molecule self-assembly synthesis of Z-scheme WO3/g-C3N4 heterojunctions for robust photocatalysis against phenolic pollutants, Chemical Engineering Journal, 2021, 403(2021): 126354.

(5) Meng, Jiaqi; Zhang, Xueyan; Liu, Yunqing; Ren, Miao; Guo, Yihang*; Yang, Xia*; Yang, Yuxin*; Engineering of graphitic carbon nitride with simultaneous potassium doping sites and nitrogen defects for notably enhanced photocatalytic oxidation performance, Science of the Total Environment, 2021, 796: 148946.

(6) Zhang, Xueyan; Wang, Xinyue; Meng, Jiaqi; Liu, Yunqing; Ren, Miao; Guo, Yihang*; Yang, Yuxin*; Robust Z-scheme g-C3N4/WO3 heterojunction photocatalysts with morphology control of WO3 for efficient degradation of phenolic pollutants, Separation and Purification Technology, 2021, 255, 117693.

(7) Liu, Yunqing; Xia, Peiyu; Li, Lingyu; Wang, Xinyue; Meng, Jiaqi; Yang, Yuxin*; Guo, Yihang*; In-situ route for the graphitized carbon/TiO2 composite photocatalysts with enhanced removal efficiency to emerging phenolic pollutants, Chinese Journal of Catalysis, 2020, 41(9), 1378-1392.

(8) Wang, Xinyue; Li, Lingyu; Meng, Jiaqi; Xia, Peiyu; Yang, Yuxin*; Guo, Yihang*; Enhanced simulated sunlight photocatalytic reduction of an aqueous hexavalent chromium over hydroxyl-modified graphitic carbon nitride, Applied Surface Science, 2020, 506, 144181.

(9) Meng, Jiaqi; Wang, Xinyue; Yang, Xia; Hu, An; Guo, Yihang*; Yang, Yuxin*; Enhanced gas-phase photocatalytic removal of aromatics over direct Z-scheme-dictated H3PW12O40/g-C3N4 film-coated optical fibers, Applied Catalysis B: Environmental, 2019, 251(2019): 168-180.

(10) Wang; Xinyue; Meng; Jiaqi; Yang; Xia; Hu; An; Yang; Yuxin*; Guo; Yihang*; Fabrication of a Perylene Tetracarboxylic Diimide–Graphitic Carbon Nitride Heterojunction Photocatalyst for Efficient Degradation of Aqueous Organic Pollutants, ACS Applied Materials & Interfaces, 2019, 11(1): 588-602

(11) Yang, Yuxin; Hu, An; Wang, Xinyue; Meng, Jiaqi; Guo, Yihang; Huo, Mingxin; Zhu, Suiyi*; Nanopore enriched hollow carbon nitride nanospheres with extremely high visible-light photocatalytic activity in the degradation of aqueous contaminants of emerging concern, Catalysis Science & Technology, 2019, 9, 355.

(12) Yang, Yuxin; Geng, Lei; Guo, Yingna; Meng, Jiaqi; Guo, Yihang*; Easy dispersion and excellent visible-light photocatalytic activity of the ultrathin urea-derived g-C3N4 nanosheets, Applied Surface Science, 2017, 425, 535–546.


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