信息来源: 发布日期:2025-07-03
jl_zheng@fzu.edu.cn
2015.09-2018.06福州大学 材料加工工程 硕士学位2018.09-2022.06福州大学 材料学 博士学位2022.09-至今 福州大学先进制造学院 先进材料系
福建省塑料协会青年专家
单/双原子低温SCR催化剂;催化剂的设计与合成;高分子复合材料
(1)泉州市高层次人才创新创业项目, 2024.06-2026.06, 主持(2)福州大学科研启动福州大学科研启动基金,2022.06-2024.06,主持(3)福州大学贵重仪器设备开放课题,2022.11-2023.11,主持(4)华北电力大学开放课题,2023.06-2025.06, 主持(5)精细化工应用技术泸州市重点实验室开放课题,2024.07-2025.07, 主持
石墨烯复合催化剂(用于污染物处理,空气净化等领域):[1] Weijie Zheng, Xiang Zhang, Yuying Zheng*, Yuanyuan yue*. “Oxynitride trap” over N/S co-doped graphene-supported catalysts promoting low temperature NH3-SCR performance: insight into the structure and mechanisms. Journal of Hazardous Materials, 2022, 423, 127187-127204. [2] Weijie Zheng, Zhiwei Zhang, Xiansheng Hong, Yuying Zheng*. Boron-doped graphene-based nanoflower-catalyst promoting low temperature NH3-SCR performance: An interesting site. Environmental Research, 2025, 274, 121189.[3] Weijie Zheng, Yuying Zheng*. In-situ fabrication of three-dimensional porous structure Mn-based catalytic filter for low-temperature NO reduction with NH3. Molecular Catalysis, 2021, 514, 11642-11651.[4] Yanbing Zhang, Xie Wang, Yanli Mao, Chengjian Song, Zhiwei Zhang, Weijie Zheng*, Revealing the reaction regularity of Mn-CeO2-x catalyst system in catalytic filter for low-temperature NH3-SCR, Journal of Industrial and Engineering Chemistry, 2024, 136, 222-228.[5] Yanbing Zhang, Xie Wang, Banglei Liang, Haibo Ren, Xiaoxia Zhang, Xingye Liu, Weijie Zheng*, Liu Xuelian*, Huazhi Zhang*, Xiang Zhang*, An investigation on reaction principles of Mn-Fe-CeOx catalyst system: Guide the synthesis of low-temperature NH3-SCR catalytic filter, Environmental Technology & Innovation, 2024, 2025, 37, 103926.[6] Weijie Zheng, Yuying Zheng*, Jian Chen, Yanbing Zhang. Fabrication of Mn-CeOxPPS functional composites by an in-situ reaction. MRS Communications, 2017, 7, 933-937. [7] 郑伟杰, 郑玉婴*, 陈健, 邹海强, 付彬彬, 陈雪红. 纳米花状MnO2/PPS功能复合滤料的制备及其NH3-SCR脱硝性能研究. 高分子学报 2017, 11, 1806-1815. 气凝胶等复合材料(用于阻燃,抗静电,导热和耐磨等高分子改性领域):[1] Xuelian Liu, Qian Li, Yuying Zheng*, Weijie Zheng*. Polypropylene assisted phase separation nylon-6 antistatic composites: MWCNTs-NH2 and CB-NH2 as hybrid conductive nanofillers, Polymer, 2025, 328, 128433[2] .Weijie Zheng, Qingshu Cai, Lei Xiong, Yuying Zheng*, Highly efficient GO‑based synergistic intumescent flame retardant/thermoplastic polyurethane for spatial composite film: insight into flame retardancy and mechanism. Journal of Thermal Analysis and Calorimetry, 2024, 149, 7289-7300.[3] Liyao Xiong#, Weijie Zheng#, Shenglong Cao, Yuying Zheng. Organic–Inorganic Double-Gel System Thermally Insulating and Hydrophobic Polyimide Aerogel. Polymers, 2022, 14(14), 2818.发表的授权发明专利:[1] 一种二元脱硝抗硫催化剂复合滤料的制备方法 (专利号:ZL201611126118.4)[2] 一步原位合成法制备二元脱硝抗硫催化剂负载滤料的方法(专利号:ZL201611125918.4,已转化)[3] 一种氮掺杂碳量子点原位生长脱硝抗硫催化剂及其制备方法(专利号:ZL201911355692.0)[4] 一种氮掺杂网络大分子原位生长脱硝抗硫催化剂的制备方法(专利号:ZL201911357552.7)[5] 一种通过开环聚合法制备脱硝功能化滤料(专利号:ZL201710536574.4)[6] 一种负载三元脱硝抗硫催化剂的木质素改性复合滤料及其制备方法(专利号:ZL201711165135.3)[7] 一种自组装脱硝抗硫催化剂原位生长的氮掺杂石墨烯及其制备方法 (专利号:ZL201911358676.7)[8] 氮硼共掺杂石墨烯复合脱硝抗硫催化剂及其制备方法 (专利号:ZL202010833307.5)[9] 负载三元高效脱硝抗硫催化剂的氮硫共掺杂石墨烯复合材料及其制备方法(专利号:ZL202010831948.7)[10] 一种夹层状石墨烯气凝胶基催化剂滤料及其制备方法(专利号:ZL202110487608.1)[11] 用于脱硝抗硫的单分散纺锤形单原子催化剂及其制备方法(专利号:ZL202111088193.7)
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环境材料,高分子复合材料
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