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吴永萌 教授、博士生导师    

本科毕业于安徽理工大学,于2016年保研至天津大学理学院化学专业,加入本课题组。

于2019年9月硕博连读,2021年12月提前博士毕业(博士生学制2.5年)。

2022年1月在本课题组任实习助研,2022年3月加入化学博后流动工作站,任理学院化学系博士后。

2023年7月入选2023年度全国博士后创新人才支持计划,获第一批天津市博士后创新岗位。

2023年12月获天津大学理学院化学系“北洋学者英才计划”副教授职位,2024年任理学院化学系副教授、博士生导师(导师团)。

2025年1月晋升教授(破格),2025年6月评聘为博士生导师

E-mail:ymwu01@tju.edu.cn


研究方向:D和15N标记化合物电合成

 

主持的科研项目:

  1. 负责人:国家自然科学基金青年项目  (经费: 30万元;编号:22401212;在研)

  2. 负责人:2023年度全国博士后创新人才支持计划,BX202302562023-2025年,64万元

  3. 负责人:第一批天津市博士后创新岗位拟资助人选(个人经费:20万元)

  4. 负责人:中国博士后科学基金第72批面上项目,2022M7223572022-2025年,8万元

  5. 负责人:天津大学“启明计划”,20万元

  6. 负责人:天津大学启动经费,50万元


代表性奖励:

     1. 2023年度天津市自然科学一等奖 (获奖人:张兵、于一夫、刘翠波、王雨婷、吴永萌、史艳梅)

     2. 2023年度全国博士后创新人才支持计划

     3. 2024年度博士后科研业绩评估考核资助一档资助(2024年全国化学学科唯一


一作或通讯作者(含共同)论文

  1. Xinyu Liu, Chuanqi Cheng, Jinghui Zhao, Bin Zhang, Yongmeng Wu*. Nylon-6 Precursor Electrosynthesis from Low-Concentration NO via Carbon-Enhanced NO Adsorption and Improved Mass Transfer. Angewandte Chemie International Edition 2025, 64(35), e202511865. (VIP) https://doi.org/10.1002/anie.202511865

  2. Jinghui Zhao, Rong Yang, Cuibo Liu*, Bin Zhang*, Yongmeng Wu*Ampere-Level 15N-Labelled Oximes Electrosynthesis by Alloy Synergy Activation and Hydroxylamine Overhydrogenation InhibitionAngewandte Chemie International Edition 2025, 64(43), e202516528. (VIP) https://doi.org/10.1002/anie.202516528

  3. Yongmeng Wu, Xinyu Liu, Rong Yang, Chuanqi Cheng, Ziyang Song, Bin Zhang*. Ampere-Level Electrosynthesis of a Nylon-6 Precursor by Local NO Coverage Tuning. Nature Synthesis 2025, https://doi.org/10.1038/s44160-025-00851-2 (Cover

  4. Yongmeng Wu, Xinyu Liu, Yanmei Huang, Nannan Meng, Bin Zhang*. Electrocatalytic C‒N Bond Construction from Inorganic Nitrogen Sources in Water. Nature Protocols 2025, accepted. https://doi.org/10.1038/s41596-025-01298-7

  5. Ziyang Song, Rong Yang, Xinyu Liu, Bin Zhang*, Yongmeng Wu*. An Organic Molecular Mimetic Metal-Free Heterogeneous Catalyst for Electrocatalytic Alkyne Semihydrogenation. Angewandte Chemie International Edition 2024, 63(42), e202410200. (Hot Paper) https://doi.org/10.1002/anie.202410200

  6. Junwei Yao, Rong Yang, Cuibo Liu, Bohang Zhao, Bin Zhang*, Yongmeng Wu*. Alkynes Electrooxidation to α,α-Dichloroketones in Seawater with Natural Chlorine Participation via Competitive Reaction Inhibition and Tip-Enhanced Reagent Concentration. ACS Central Science 2024, 10(1), 155–162. https://doi.org/10.1021/acscentsci.3c01277 

  7. Ziyang Song, Chuanqi Cheng, Changhong Wang, Junwei Yao, Cuibo Liu, Bin Zhang*, Yongmeng Wu*. Interstitial Modification of Palladium Nanocubes with Nitrogen Atoms Promotes Aqueous Electrocatalytic Alkyne Semihydrogenation. ACS Materials Letters 2023, 5(11), 3068–3073. https://doi.org/10.1021/acsmaterialslett.3c00944 

  8. Mengyang Li#, Yongmeng Wu#, Bohang Zhao#, Chuanqi Cheng#, Jinghui Zhao, Cuibo Liu, Bin Zhang*. Electrosynthesis of Amino Acids from NO and α-Keto Acids using Two Decoupled Flow Reactors. Nature Catalysis 2023, 6(10), 906–915. https://doi.org/10.1038/s41929-023-01012-4

  9. Meng He, Yongmeng Wu*, Rui Li, Yuting Wang, Cuibo Liu, Bin Zhang*. Aqueous Pulsed Electrochemistry Promotes C–N Bond Formation via a One-Pot Cascade Approach. Nature Communications 2023, 14, 5088. https://doi.org/10.1038/S41467-023-40892-9

  10. Yongmeng Wu*, Jinghui Zhao, Changhong Wang, Tieliang Li, Bohang Zhao, Ziyang Song, Cuibo Liu, Bin Zhang*. Electrosynthesis of a Nylon-6 Precursor from Cyclohexanone and Nitrite under Ambient Conditions. Nature Communications 2023, 14, 3057. https://doi.org/10.1038/s41467-023-38888-6 

  11. Yongmeng Wu, Mengyang Li, Tieliang Li, Jinghui Zhao, Ziyang Song, Bin Zhang*. Electrosynthesis of 15N-Labeled Amino Acids from 15N-Nitrite and Ketonic Acids. Science China Chemistry 2023, 66(6), 1854–1859.  https://doi.org/10.1007/s11426-023-1613-x 

  12. Yongmeng Wu, Jinghui Zhao, Bin Zhang*. Electrochemical C–S Bond Construction from CO2 and an Inorganic Sulfur Source. Science Bulletin 2023, 68(14), 14661468. (Highlight) https://doi.org/10.1016/j.scib.2023.06.035

  13. Xianen Lan, Chuanqi Cheng, Chengying Guo, Minghao Guo, Tieliang Li, Yongmeng Wu*, Yifu Yu*, Bin Zhang*, Electrosynthesis of Hydroxylamine from Nitrate Reduction in Water, Science China Chemistry 2023, 66(6), 1758–1762. https://doi.org/10.1007/s11426-023-1580-2 

  14. Rui Li#, Yongmeng Wu#, Changhong Wang, Meng He, Cuibo Liu*, Bin Zhang*. One-Pot H/D Exchange and Low-Coordinated Iron Electrocatalyzed Deuteration of Nitriles in D2O to α,β-Deuterio Aryl EthylaminesNature Communications 2022, 13, 5951. 

  15. Shuoshuo Guo#, Yongmeng Wu#Changhong Wang, Ying Gao, Mengyang Li, Bin Zhang*, Cuibo Liu*. Electrocatalytic Hydrogenation of Quinolines with Water over a Fluorine-Modified Cobalt Catalyst. Nature Communications 2022, 13, 5297.

  16. Qi Hao, Yongmeng Wu*, Cuibo Liu, Yanmei Shi, Bin Zhang*. Unveiling Subsurface Hydrogen Inhibition for Promoting Electrochemical Transfer Semihydrogenation of Alkynes with WaterChinese Journal of Catalysis 2022, 43(12), 3095-3100. 

  17. Yongmeng Wu, Cuibo Liu, Changhong Wang, Yifu Yu, Yanmei Shi, Bin Zhang*, Converting Copper Sulfide to Copper with Surface Sulfur for Electrocatalytic Alkyne Semi-Hydrogenation with Water. Nature Communications  2021, 12, 3881. (Featured in Nature Communications Editor's Highlights)

  18. Yangfang Ling#, Yongmeng Wu#, Changhong Wang, Cuibo Liu, Siyu Lu, Bin Zhang*. Selenium Vacancy Promotes Transfer Semi-Hydrogenation of Alkynes from Water Electrolysis. ACS Catalysis 2021, 11(15), 9471-9478.

  19. Yongmeng Wu#, Cuibo Liu#, Changhong Wang, Siyu Lu, Bin Zhang*.Selective Transfer Semihydrogenation of Alkynes with H2O (D2O) as the H (D) Source over a Pd-P Cathode. Angewandte Chemie International Edition 2020, 59(47), 21170-21175.  (Highlighted by Prof. Yasuhiro Uozumi at Institue for Molecular Science, Japan: Yasuhiro Uozumi, Aya Tazawa. Selective Electrocatalytic Semihydrogenation of Alkynes by Water on a Pd–P Nanoparticle Network Cathode. Synfacts 2021, 17(02), 0189)


合作论文

  1. Ying Gao, Meng He, Yongmeng Wu, Bo-Hang Zhao, Cuibo Liu, Bin Zhang*. Electrocatalytic Semi-Hydrogenation of Alkynes using Water as the Hydrogen Source. Nature Protocols 2025, https://doi.org/10.1038/s41596-025-01230-z.

  2. Cuibo Liu, Fanpeng Chen, Bohang Zhao, Yongmeng Wu, Bin Zhang*. Electrochemical Hydrogenation and Oxidation of Organic Species involving Water. Nature Reviews Chemistry 2024, 8(4), 277–293.

  3. Cuibo Liu, Yongmeng Wu, Bohang Zhao, Bin Zhang*. Designed Nanomaterials for Electrocatalytic Organic Hydrogenation using Water as the Hydrogen Source. Accounts of Chemical Research 2023, 56(13), 1872–1883

  4. Junwei Yao, Chuanqi Cheng, Yongmeng Wu, Cuibo Liu, Shuoshuo Guo, Ying Gao*, Bin Zhang*. Interfacial Hydrogen-Bond Network Regulation Tuned Water Dissociation Enables Selective Chlorination of Alkenes. Journal of the American Chemical Society 2025, 147(9), 8024–8031.
  5. Rong Yang*, Jinghui Zhao, Yongmeng Wu, Ying Gao, Bin Zhang*. A Spin Descriptor Map Predicts NiFe2O4 for Efficient Electrosynthesis of Cyclohexanone OximeAngewandte Chemie International Edition 2025, 64(46), e202517358. (VIP (Hot Topic: Artificial Intelligence and Machine Learning)
  6. Ying Gao, Mingming Yan, Chuanqi Cheng, Hao Zhong, Bohang Zhao, Cuibo Liu, Yongmeng Wu, Bin Zhang*. Membrane-Free Electrosynthesis of Epichlorohydrin Mediated by Bromine Radicals over Nanotips. Journal of the American Chemical Society 2024, 146(1), 714–722.
  7. Bohang Zhao, Fanpeng Chen, Mengke Wang, Chuanqi Cheng, Yongmeng Wu, Cuibo Liu, Yifu Yu, Bin Zhang*. Economically Viable Electrocatalytic Ethylene Production with High Yield and Selectivity. Nature Sustainability 2023, 6(7), 827–837. 
  8. Huizhi Li, Ying Gao, Yongmeng Wu, Cuibo Liu*, Chuanqi Cheng,  Fanpeng Chen, Yanmei Shi,  Bin Zhang*. σ-Alkynyl Adsorption Enables Electrocatalytic Semihydrogenation of Terminal Alkynes with Easy-Reducible/Passivated Groups over Amorphous PdSx NanocapsulesJournal of the American Chemical Society 2022, 144(42), 19456-19465. (Front Cover
  9. Ying Gao, Rong Yang, Changhong Wang, Cuibo Liu, Yongmeng Wu, Huizhi Li, Bin Zhang*. Field-Induced Reagent Concentration and Sulfur-Adsorption Enable Efficient Electrocatalytic Semihydrogenation of Alkynes. Science Advances 2022, 8(8), eabm9477. 

  10. Yanmei Huang, Yuting Wang, Yongmeng Wu, Yifu Yu, Bin Zhang*Electrocatalytic Construction of the C-N Bond from the Derivates of CO2 and N2Science China Chemistry 2022, 65(2), 204-206. (Perspective)