个人简介
教育经历:
2001-2002年 日本甲南大学(神户)高科技研究中心博士后
1994-1997年 天津大学化学工程博士
1992-1994年 天津大学化学工程硕士
1988-1992年 山东工业大学化学工程学士
工作经历:
2006- 天津大学化工学院任教授
1999-2006年 天津大学化工学院任副教授
1997-1999年 天津大学化工学院任助理教授
科研项目:
1)国家重点研发计划项目“高等级病原微生物实验室生物安全防护技术与产品“(2016-2018)
2)国家重点研发计划项目子课题“生物原油提质加工生物燃油工艺与设备研发”(2016-2021)
3)国家基金面上项目“双层聚己内酯-多肽共聚复合材料的合成及生物降解过程研究”(2016-2019)
研究领域
1. 化工过程清洁生产工艺研发
2. 特种高分子材料合成
3. 高性能锂电池正极材料研制
近期论文
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Wen Xiao, Chenhui Wang, Jinli Zhang, You Han, Wei Li, Guili Guo*,Molybdenum doping and MoSi2 coating for enhancing electrochemical performance of LiNi0.6Co0.1Mn0.3O2
Journal of Alloys and Compounds 2023, 960, 170612
Hailin Lei , Mao Peng, Jing Liu, Jinli Zhang, Wei Li*,Boron & nitrogen synergistically enhance the performance of LiNi0.6Co0.1Mn0.3O2
Journal of Alloys and Compounds 2023, 959, 170522
Yichong Chen, Mao Peng, Ye Lv, Wei Li, Jinli Zhang, Yan Fu*,Highly selective electrochemical oxidation of 2-nitro-4-methylsulfonyltoluene to 2-nitro-4-methylsulfonylbenzoic acid enabled by molybdate
Journal of Applied Electrochemistry 2023,53(4):705-712
Shuchun Zhao, Guixuan Shan, Xinhui Yang, Kangkang Ma, Wei Li and Jinli Zhang*,Study of liquid-liquid extraction and mass transfer process with solid particles in the inline teethed high shear mixer
Separation and Purification Technology 2023,314:123559
Junheng Guo, Yudong Liu, Guixuan Shan, Haojie Li, Wei Li, Hongyun Qin, Jinke Xia, Jiangjiexing Wu*, Jinli Zhang*,The structure-effect relationship between inline high shear mixers and micromixing: Experiment and CFD simulation
Chemical Engineering Science 2023,272:118605
Shuchun Zhao, Wei Li, Jinli Zhang*,Investigation of the temporal and spatial flow features within the High-Shear Mixer by modal decomposition techniques
AIChE Journal 2023,69(3):e17967
Xinyuan Wang,Jinyu Wang*,Wei Li*,Jinli Zhang,Sustainable removal of fluorine ions using ZrO2-MgO@C composite
Separation and Purification Technology 2023,310:122933
Yudong Liu,Yixia Zhang,Junheng Guo,Wei Li,Mingliang Zhouc*,JinliZhang*,Suspension of high concentration solids in a pilot scale jet-flow high shear mixer
Chemical Engineering Journal 2023, 451(1):138567
Yudong Liu,Yixia Zhang,Junheng Guo,Wei Li,Mingliang Zhou*,Jinli Zhang*, Artificial neural network for mechanism identification and process prediction of the nanoclusters deagglomeration in the in-line HSM
Chemical Engineering Journal 2023,454:140526
Aiqun Kong, Houjun Zhang, Yifan Sun, Ye Lv, Menghui Liu, Haojie Lia, Yifei Wang, Yan Fu*, Haiyang Zhang*, Wei Li, Jinli Zhang*, Surface Reconstruction Enables Outstanding Performance of Fe2O3/Ni(OH)2 Nanosheet Arrays for Ultrahigh Current Density Oxygen Evolution Reaction
Applied Surface Science 2023, 613, 156023
Qianqian Zhang,Yifan Sun,Wei Li*,Jinli Zhang,Yan Fu*,Highly selective electrocatalytic hydrogenation of cinnamaldehyde over tin dioxide-supported palladium nanocatalysts
International Journal of Hydrogen Energy 2022,47 (90):38229-38241
Yusheng Gao,Aiqun Kong,Mao Peng,Ye Lv,Menghui Liu,Wei Li*,Jinli Zhang,Yan Fu *,Tuning electrochemical environment enables unexpected C=O selectivity for cinnamaldehyde hydrogenation over self-standing palladium cathode
Molecular Catalysis 2022,529:112536
Huimin Li, Tiantong Zhang, Mao Peng, Qianqian Zhang, Jing Liu, Jinli Zhang, Yan Fu*, Wei Li*,Highly selective electrocatalytic hydrogenation of 5-hydroxymethylfurfural to 2,5-dihydroxymethylfuran over AgCu nanoalloys
International Journal of Hydrogen Energy 2022,67:28904-28914
Yudong Liu, Yixia Zhang, Junheng Guo, Wei Li, Minqing Zhang, Jinli Zhang*,Evaluation on micromixing of a continuous solid particle flow in In-Line HSMs by experiments and artificial intelligence approaches
Industrial & Engineering Chemistry Research 2022,61(31):11604-11616
Aiqun Kong,Mao Peng,Menghui Liu,Ye Lv,Houjun Zhang,Yusheng Gao,Jing Liu,Yan Fu*,Wei Li,Jinli Zhang*,Robust Pt/TiO2/Ni(OH)2 Nanosheet Arrays Enable Outstanding Performance for High Current Density Alkaline Water Electrolysis
Applied Catalysis B: Environmental 2022,316:121654
Jing Liu,Shan Gao,Zheng Si,Baozhao Shi,Huimin Li,Jinli Zhang,Wei Li*,Lanthanum Oxyfluoride modifications Boost the Electrochemical Performance of Nickel-rich Cathode
Applied Surface Science 2022, 599:153928