王双印 教授 博士 湖南省 研究领域: 精细化工 研究方向: 电催化与电合成 电催化剂缺陷化学; 有机分子电催化转化; 质子交换膜燃料电池; 环境电催化、电化学提铀; 电化学分离强化。 所在单位: 湖南大学

基本信息

所在单位:
湖南大学
机构细分:
化学化工学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
教育经历:
2007~2010  博士生, 新加坡南洋理工大学     
2006~2006  在读研究生, 浙江大学   
2005~2006  国际交换留学生, 日本福井大学
2002~2006  本科, 浙江大学
工作经历:
2013~至今    教授,博导 湖南大学
2012~ 2013   玛丽居里学者  英国曼彻斯特大学, 
2011~2012    博士后,美国德克萨斯大学奥斯汀分校,
2010~2011    博士后, 美国凯斯西储大学,
专家介绍:
王双印,国家杰出青年基金获得者、科睿唯安全球高被引科学家(化学、材料), 爱思唯尔中国高被引学者(化学), 科技部重点研发计划首席科学家,基金委原创探索项目负责人。现为湖南大学二级教授,博士生导师。2006年本科毕业于浙江大学化工系,2010年在新加坡南洋理工大学获得博士学位,随后在美国凯斯西储大学, 德克萨斯大学奥斯汀分校、英国曼彻斯特大学(玛丽居里学者)开展研究工作。主要研究方向为电催化剂缺陷化学、有机分子电催化转化、热电耦合催化。代表性论文发表在国家科学评论,中国科学化学、材料,科学通报,Nature Chem., Nature Catalysis, Nature Sustainability, Nature Synthesis, JACS, Angew. Chem., Adv. Mater., Chem等期刊,总引用55000余次,H指数124,获中国青年科技奖、教育部青年科学奖、湖南省自然科学奖一等奖、中国侨届贡献一等奖、青山科技奖。

科研能力

研究领域:
精细化工
研究方向:
电催化与电合成
电催化剂缺陷化学;
有机分子电催化转化;
质子交换膜燃料电池;
环境电催化、电化学提铀;
电化学分离强化。
英文标签:
Electrocatalysis;Electrocatalysts;Oxygen Evolution Reaction;Oxygen Reduction Reaction;Electrocatalyst;Fuel Cells;Electrolyte Design;Metal-organic Frameworks;Layered Double Hydroxides;Hydrogen Evolution Reaction
论文著作:
(1) Zhu, Z. H.; Jiang, Y. M.; Xu, L. T.; An, Q. Z.; Nga, T. T. T.; Chen, J. L.; Fan, Y.; Liu, Q. H.; Dong, C. L.; Wang, S. Y.; Zou, Y. Q. Highly Efficient Synthesis of α-Amino Acids via Electrocatalytic C-N Coupling Reaction Over an Atomically Dispersed Iron Loaded Defective TiO2. Advanced Materials 2025, 37 (5), 2409864.
(2) Zhang, J.; Cui, L. T.; Wang, Y. X.; Wang, H. N.; Tao, L.; Cheng, Y.; Lu, S. F.; Xiang, Y.; Wang, S. Y. Electronic structure engineering of palladium nanoparticles by transition metal single atom supports for efficient carbohydrazide oxidation. Applied Catalysis B-Environment and Energy 2025, 365, 124927.
(3) Yan, X. Y.; Zhou, Y. S.; Wang, S. Y. Nano-High Entropy Materials in Electrocatalysis. Advanced Functional Materials 2025, 35 (2), 2413115.
(4) Liu, F. Q.; Chen, W.; Wang, T.; Zhang, J. C.; Yang, D. Y.; Dai, Y. H.; Liu, G. Z.; Zhou, J.; Wang, S. Y.; Guan, X. H. Efficient Electrosynthesis of Valuable para-Benzoquinone from Aqueous Phenol on NiRu Hybrid Catalysts. Angewandte Chemie-International Edition 2025, 64 (3), e202415438.
(5) Lin, L. G.; Cai, Z. W.; Niu, Y. F.; Wu, Y. J.; Wang, J. J.; Li, M. Y.; Li, D.; Wang, T. H.; Wang, Z. B.; Tao, L.; Wang, S. Y. H Induced Metal-Insulation Transition Boosts the Stability of High Temperature Polymer Electrolyte Membrane Fuel Cells. Angewandte Chemie-International Edition 2025, 64 (7), e202419919.
(6) Gao, X. F.; Pan, Y. P.; Qiu, J. H.; Peng, J.; Wang, S. Y.; Zou, Y. Q. Enhancing the Stability of Cu-Based Electrocatalyst via Fe Alloy in Electrocatalytic Formaldehyde Oxidation with Long Durability. Advanced Functional Materials 2025, 35 (12), 2417545.
(7) Gao, H. M.; Song, C.; Chen, R.; Wu, T. Y.; Zou, J.; Du, S. Q.; Dong, C. L.; Huang, Y. C.; Zhu, R. L.; Wang, Y. N.; Wang, S. Y. Activation of iridium site based on IrO2 catalysts towards highly stable PEM water electrolyzer. Chemical Engineering Science 2025, 302, 120912.
(8) Ding, J. J.; Huang, C.; Lyu, Y.; Jiang, S. P.; Wang, S. Y.; Zheng, J. Y. Sodium-mediated photoelectrochemical nitrogen-to-ammonia fixation. Applied Catalysis B-Environment and Energy 2025, 365, 124935.
(9) Zhu, Y. W.; Jiang, Y. M.; Li, H. J. W.; Zhang, D. C.; Tao, L.; Fu, X. Z.; Liu, M.; Wang, S. Y. Tip-like Fe-N4 Sites Induced Surface Microenvironments Regulation Boosts the Oxygen Reduction Reaction. Angewandte Chemie-International Edition 2024, 63 (11), e202319370.
(10) Zhou, Y. Y.; Zhong, H. J.; Chen, S. H.; Wen, G. B.; Shen, L.; Wang, Y. Y.; Chen, R.; Tao, L.; Wang, S. Y. Proton exchange membrane-based electrocatalytic systems for hydrogen production. Carbon Energy 2024, e629.
(11) Zhou, P.; Lv, X. S.; Huang, H. N.; Cheng, B. X.; Zhan, H. Y.; Lu, Y. K.; Frauenheim, T.; Wang, S. Y.; Zou, Y. Q. Construction of Ag―Co(OH)2 Tandem Heterogeneous Electrocatalyst Induced Aldehyde Oxidation and the Co-Activation of Reactants for Biomass Effective and Multi-Selective Upgrading. Advanced Materials 2024, 36 (26), 2312402.
(12) Zhou, H.; Liu, H.; Sun, Y. Y.; Jiang, L. Z.; Xiao, J. M.; Zhang, H. D.; Xie, H. J.; Li, L. N.; Wang, S. Y.; Han, L. Synergistic Effect of Single Atomic Ce Sites and CeO2 Nanoparticles for Boosting Oxygen Reduction Reaction. Advanced Energy Materials 2024, 15 (14), 2404689.
(13) Zhao, J. M.; Yuan, Y.; Zhao, F.; Han, W.; Yuan, Q.; Kou, M. M.; Zhao, J. S.; Chen, C.; Wang, S. Y. Identifying the facet-dependent active sites of Cu2O for selective C-N coupling toward electrocatalytic urea synthesis. Applied Catalysis B-Environment and Energy 2024, 340, 123265.
(14) Zhang, Y. Q.; Liu, J. J.; Xu, Y. F.; Xie, C.; Wang, S. Y.; Yao, X. D. Design and regulation of defective electrocatalysts. Chemical Society Reviews 2024, 53 (21), 10620-10659.
(15) Zhang, X. R.; Zhu, X. R.; Bo, S. W.; Chen, C.; Zhai, Q. F.; Li, S.; Tu, X. J.; Zheng, J. Y.; Wang, D. D.; Wei, X. X.; Chen, W.; Wang, T. H.; Li, Y. F.; Liu, Q. H.; Jiang, S. P.; Dai, L. M.; Wang, S. Y. Selective nitrogen fixation via Janus C-N coupling in co-electrolysis. Chem 2024, 10 (5), 1516-1527.
(16) Zhang, X. R.; Lyu, Y.; Chen, C.; Zheng, J. Y.; Jiang, S. P.; Wang, S. Y. Enhanced charge- carrier dynamics and efficient solar- to- urea conversion on Si- based photocathodes. Proceedings of the National Academy of Sciences of the United States of America 2024, 121 (8), e2311326121.
(17) Zhang, L.; Jin, P. Y.; Wu, Z.; Zhou, B.; Jiang, J. C.; Deng, A. M.; Li, Q. Y.; Hussain, T.; Zhang, Y. Q.; Liu, H. W.; Wang, S. Y. CuO/Co3O4 Bifunctional Catalysts for Electrocatalytic 5-Hydroxymethylfurfural Oxidation Coupled Cathodic Ammonia Production. Energy & Environmental Materials 2024, 7 (5), e12725.
(18) Zhang, F.; Chen, S. P.; Wang, G. J.; Wang, Y. Y.; Wang, S. Y. Oxygen Vacancy-Mediated Highly Selective and Efficient Uranium Extraction from Seawater. Acs Es&T Water 2024, 4 (6), 2702-2710.
(19) Zhang, D. C.; Zhou, Y. Y.; Zhu, Y. W.; Du, S. Q.; Huang, G.; Lin, J. Q.; Long, P.; Wang, T. H.; Tao, L.; Fu, X. Z.; Wang, S. Y. Ethylenediamine tetramethylenephosphonic acid boosting the electrocatalytic interface construct and proton transfer for high-temperature polymer electrolyte membrane fuel cells. Journal of Energy Chemistry 2024, 99, 159-164.
(20) Yang, M.; Jiang, Y. M.; Dong, C. L.; Xu, L. T.; Huang, Y. T.; Leng, S. F.; Wu, Y. D.; Luo, Y. X.; Chen, W.; Nga, T. T. T.; Wang, S. Y.; Zou, Y. Q. A self-reactivated PdCu catalyst for aldehyde electro-oxidation with anodic hydrogen production. Nature Communications 2024, 15 (1), 9852.
(21) Yang, C. M.; Zhang, L.; Lu, Y. X.; Zou, Y. Q.; Wang, S. Y. Designing efficient catalysts for electrocatalytic organic synthesis: From electronic structure to adsorption behavior. Matter 2024, 7 (2), 456-474.
(22) Xu, L. T.; Chen, W.; Wang, C. R.; Wu, W. J.; Yao, Y. L.; Huang, Z. F.; Wu, J. C.; Yang, M.; Wu, Y. D.; Xie, D. K.; Zou, Y. Q.; Wang, S. Y. Combining anodic alcohol oxidative coupling for C-C bond formation with cathodic ammonia production. National Science Review 2024, 11 (5), nwae134.
(23) Xie, D. K.; Yang, T. Y.; Ma, C. Y.; Dong, C. L.; Wang, S. Y.; Zou, Y. Q. Highly selective electrosynthesis of imines via electroreduction coupling of nitroarenes with aryl aldehydes on Co9S8 with positively charged sulfur vacancies. Chinese Journal of Catalysis 2024, 65, 206-216.
(24) Xie, C.; Chen, W.; Wang, Y. Y.; Yang, Y. H.; Wang, S. Y. Dynamic evolution processes in electrocatalysis: structure evolution, characterization and regulation. Chemical Society Reviews 2024, 53 (22), 10852-10877.
(25) Xiao, J. M.; Li, P.; Sun, Y. Y.; Liu, H.; Khan, J.; Zhang, H. D.; Zhou, H.; Su, Y. Q.; Wang, S. Y.; Han, L. Synergistic Effect of Nitrogen/Phosphorus Co-Doping and Molybdenum Carbide Induced Electron Redistribution of Carbon Layer to Boost Hydrogen Evolution Reaction. Chinese Journal of Chemistry 2024, 42 (1), 55-60.
(26) Xia, Z. C.; Xu, L. T.; Ma, C. Y.; An, Q. Z.; Bu, C. Y.; Fan, Y.; Lu, Y. X.; Pan, Y. P.; Xie, D. K.; Liu, Q. H.; Wang, S. Y.; Zou, Y. Q. Enhancing the Electrocatalytic Hydrogenation of Furfural via Anion-Induced Molecular Activation and Adsorption. Journal of the American Chemical Society 2024, 146 (35), 24570-24579.
(27) Xia, Z. C.; Ma, C. Y.; Fan, Y.; Lu, Y. X.; Huang, Y. C.; Pan, Y. P.; Wu, Y. D.; Luo, Q. Y.; He, Y. Q.; Dong, C. L.; Wang, S. Y.; Zou, Y. Q. Vacancy Optimized Coordination on Nickel Oxide for Selective Electrocatalytic Oxidation of Glycerol. ACS Catalysis 2024, 14 (3), 1930-1938.
(28) Wu, Z.; Liu, Y. J.; Wang, D. D.; Zhang, Y. Q.; Gu, K. Z.; He, Z. J.; Liu, L. M.; Liu, H. W.; Fan, J. C.; Chen, C.; Wang, S. Y. Cu@Co with Dilatation Strain for High-Performance Electrocatalytic Reduction of Low-Concentration Nitric Oxide. Advanced Materials 2024, 36 (11), 2309470.
(29) Wu, Y. J.; Huang, G.; Du, S. Q.; Li, M. Y.; Liu, Q.; Zhou, Y. Y.; Jiang, Z. Y.; Zhu, X. R.; Wang, Y. Q.; Wang, T. H.; Tao, L.; Wang, S. Y. Electrocatalysis Boosts the Methanol Thermocatalytic Dehydrogenation for High-Purity H2 and CO Production. Journal of the American Chemical Society 2024, 146 (14), 9657-9664.
(30) Wu, Y. D.; Jiang, Y. M.; Chen, W.; Yue, X.; Dong, C. L.; Qiu, M. Y.; Nga, T. T. T.; Yang, M.; Xia, Z. C.; Xie, C.; Xu, L. T.; Wang, R. Q.; Wang, S. Y.; Zou, Y. Q. Selective Electroreduction of 5-Hydroxymethylfurfural to Dimethylfuran in Neutral Electrolytes via Hydrogen Spillover and Adsorption Configuration Adjustment. Advanced Materials 2024, 36 (7), 2307799.
(31) Wu, J.; Zhai, Z. X.; Yin, S. B.; Wang, S. Y. General Formation of Interfacial Assembled Hierarchical Micro-Nano Arrays for Biomass Upgrading-Coupled Hydrogen Production. Advanced Functional Materials 2024, 34 (6), 2308198.
(32) Wen, G. B.; Ren, B. H.; Zhang, X. W.; Luo, D.; Liu, S. X.; Li, X.; Lu, H.; Xu, Y. M.; Akinoglu, E. M.; Tao, L.; Ma, Q. Y.; Wang, X.; Feng, R. F.; Wang, S. Y.; Chen, Z. W. Cu-In Dual Sites with Sulfur Defects toward Superior Ethanol Electrosynthesis from CO2 Electrolysis. Advanced Materials 2024, 36 (40), 2310822.
(33) Wei, X. X.; Chen, C.; Fu, X. Z.; Wang, S. Y. Oxygen Vacancies-Rich Metal Oxide for Electrocatalytic Nitrogen Cycle. Advanced Energy Materials 2024, 14 (1), 2303027.
(34) Wang, Y. J.; Zhu, X. R.; An, Q. Z.; Zhang, X. R.; Wei, X. X.; Chen, C.; Li, H.; Chen, D. W.; Zhou, Y. Y.; Liu, Q. H.; Shao, H. Y.; Wang, S. Y. Electron Deficiency is More Important than Conductivity in C-N Coupling for Electrocatalytic Urea Synthesis. Angewandte Chemie-International Edition 2024, 63 (49), e202410938.
(35) Wang, Y. J.; Xie, C.; Wang, G. J.; Zhang, F.; Xiao, Z. H.; Wang, J. J.; Wang, Y. Y.; Wang, S. Y. Electrochemistry-assisted in-situ regeneration of oxygen vacancies and Ti (III) active sites for persistent uranium recovery at a low potential. Water Research 2024, 258, 121817.
(36) Wang, S. Y. An electrocatalytic oxidative approach to synthesis urea. Chem Catalysis 2024, 4 (9), 101115.
(37) Tu, X. J.; Zhu, X. R.; Bo, S. W.; Zhang, X. R.; Miao, R. P.; Wen, G. B.; Chen, C.; Li, J.; Zhou, Y. Y.; Liu, Q. H.; Chen, D. W.; Shao, H. Y.; Yan, D. F.; Li, Y. F.; Jia, J. F.; Wang, S. Y. A Universal Approach for Sustainable Urea Synthesis via Intermediate Assembly at the Electrode/Electrolyte Interface. Angewandte Chemie-International Edition 2024, 63 (3), e202317087.
(38) Shen, J. J.; Zhang, M. T.; Huang, Y. K.; Chen, C.; Zheng, Y. H.; Dong, S. Y.; Jiang, J. M.; Lei, W.; Wang, S. Y.; Shao, H. Y. Ru-induced lattice expansion of metallic Co with favorable surface property for high-efficiency water electrolysis. Applied Catalysis B-Environment and Energy 2024, 358, 124392.
(39) Pan, Y. P.; Zou, Y. Q.; Ma, C. Y.; Nga, T. T. T.; An, Q. Z.; Miao, R.; Xia, Z. C.; Fan, Y.; Dong, C. L.; Liu, Q. H.; Wang, S. Y. Electrocatalytic Coupling of Nitrate and Formaldehyde for Hexamethylenetetramine Synthesis via C-N Bond Construction and Ring Formation. Journal of the American Chemical Society 2024, 146 (28), 19572-19579.
(40) Ni, W. P.; He, X. D.; Chen, H. J.; Dai, M. Y.; Zhang, W.; Zhang, Y.; Wang, S. Y.; Zhang, S. G. 93% single-atom utilization in base-resistant metal-organic framework quantum dots for ampere-level CO2 electroreduction. Energy & Environmental Science 2024, 17 (9), 3191-3201.
(41) Miao, R. P.; Chen, D. W.; Guo, Z. Y.; Zhou, Y. Y.; Chen, C.; Wang, S. Y. Recent advances in electrocatalytic upgrading of nitric oxide and beyond. Applied Catalysis B-Environment and Energy 2024, 344, 123662.
(42) Lyu, Y.; Zheng, J. Y.; Wang, S. Y. Photoelectrochemical Lithium Extraction from Waste Batteries. Chemsuschem 2024, 17 (17), e202317087.
(43) Lyu, Y.; Zheng, J. Y.; Huang, A. B.; Zhou, H. J.; Jiang, S. P.; Wang, S. Y. Reactivity and durability of TiO2 photoanodes with dominant high-energy (211) facets. Journal of Materials Chemistry A 2024, 12 (32), 21041-21049.
(44) Lu, Z. R.; Li, S. K.; Lu, Y. X.; Wang, S. Y.; Zou, Y. Q. Cleavage of C―C Bonds for Biomass Upgrading on Transition Metal Electrocatalysts. Acta Physico-Chimica Sinica 2024, 40 (4), 2306003.
(45) Lu, Y. X.; Li, Y. Y.; Zhou, B.; Wu, J. C.; Zhou, L.; Pan, Y. P.; Xia, Z. C.; Yang, M.; Wu, Y. D.; Yuan, Z. R.; Peng, R. X.; Kong, Z. J.; Wang, S. Y.; Zou, Y. Q. Anodic Electrosynthesis of Amide from Alcohol and Ammonia. Ccs Chemistry 2024, 6 (1), 125-136.
(46) Lu, Y. X.; Chen, M. Y.; Wang, Y. Q.; Yang, C. M.; Zou, Y. Q.; Wang, S. Y. Aqueous electrocatalytic small-molecule valorization trilogy. Chem 2024, 10 (5), 1371-1390.
(47) Liu, Z. J.; Cui, S. S.; Liu, L. Y.; Wang, F.; Wang, G. J.; Kong, Z. J.; Liu, X. F.; Zhang, X.; Feng, H. S.; Huang, R. W.; Wang, S. Y.; Zang, S. Q. Regulating the microenvironment of catalytic sites by atomically precise and charge tunable Au25 nanoclusters for efficient 5-hydroxymethylfurfural electro-oxidation. Science China-Chemistry 2024, 67.
(48) Liu, Y.; Yang, Z. H.; Zou, Y. Q.; Wang, S. Y.; He, J. Y. Interfacial Micro-Environment of Electrocatalysis and Its Applications for Organic Electro-Oxidation Reaction. Small 2024, 20 (4), 2306488.
(49) Liu, Y.; Yang, Z. H.; Zou, Y. Q.; Wang, S. Y.; He, J. Y. Trace Cobalt Doping and Defect Engineering of High Surface Area α-Ni(OH)2 for Electrocatalytic Urea Oxidation. Energy & Environmental Materials 2024, 7 (2), e12576.
(50) Liu, Q.; Du, S. Q.; Liu, T. Y.; Gong, L. Y.; Wu, Y. J.; Lin, J. Q.; Yang, P. P.; Huang, G.; Li, M. Y.; Wu, Y. D.; Zhou, Y. Y.; Li, Y. F.; Tao, L.; Wang, S. Y. Efficient Low-temperature Hydrogen Production by Electrochemical-assisted Methanol Steam Reforming. Angewandte Chemie-International Edition 2024, 63 (7), e202315157.
(51) Li, S. K.; Zou, Y. Q.; Chen, C.; Wang, S. Y.; Liu, Z. Q. Defect engineered electrocatalysts for C-N coupling reactions toward urea synthesis. Chinese Chemical Letters 2024, 35 (8), 109147.
(52) Li, M. Y.; Yang, P. P.; Lv, W. J.; Liu, Q.; Wu, Y. J.; Du, S. Q.; Huang, G.; Jiang, Z. Y.; Wang, J. J.; Xu, Y. B.; Zhou, Y. Y.; Lu, S. F.; Tao, L.; Wang, S. Y. Ultrastable Ruthenium-Based Electrocatalysts for Hydrogen Oxidation Reaction in High-Temperature Polymer Electrolyte Membrane Fuel Cells. Ccs Chemistry 2024, 202404436.
(53) Li, H.; Xu, L. T.; Bo, S. W.; Wang, Y. J.; Xu, H.; Chen, C.; Miao, R. P.; Chen, D. W.; Zhang, K. F.; Liu, Q. H.; Shen, J. J.; Shao, H. Y.; Jia, J. F.; Wang, S. Y. Ligand engineering towards electrocatalytic urea synthesis on a molecular catalyst. Nature Communications 2024, 15 (1), 8858.
(54) Kong, Z. J.; Wu, Z. P.; Maswadeh, Y.; Yu, G.; Vargas, J. A.; Caracciolo, D.; Petkov, V.; Zang, S. Q.; Tao, L.; Wang, S. Y.; Zhong, C. J. Self-Sustainable Lattice Strains of Morphology-Tuned Nanowires in Electrocatalysis. ACS Catalysis 2024, 14 (7), 4709-4718.
(55) Jin, P. Y.; Zhang, L.; Wu, Z.; Zhou, B.; Duan, Z. J.; Li, H. Y.; Liu, H. W.; Deng, A. M.; Li, Q. Y.; Zhang, Y. Q.; Zhao, C. X.; Wang, S. Y. Heterogeneous interface induced Co3O4-NiO catalyst for efficient electrocatalytic 5-Hydroxymethylfurfural oxidation. Chemical Engineering Journal 2024, 481, 148303.
(56) Huang, Y. C.; Wu, Y. J.; Lu, Y. R.; Chen, J. L.; Lin, H. J.; Chen, C. T.; Chen, C. L.; Jing, C.; Zhou, J.; Zhang, L. J.; Wang, Y. Y.; Chou, W. C.; Wang, S. Y.; Hu, Z. W.; Dong, C. L. Direct Identification of O-O Bond Formation Through Three-Step Oxidation During Water Splitting by Operando Soft X-ray Absorption Spectroscopy. Advanced Science 2024, 11 (40), 2401236.
(57) He, Y. Q.; Zeng, X.; Lu, Z. R.; Mo, S. H.; An, Q. Z.; Liu, Q. H.; Yang, Y. L.; Lan, W.; Wang, S. Y.; Zou, Y. Q. Aqueous Electrocatalytic Hydrogenation Depolymerization of Lignin β-O-4 Linkage via Selective Caryl-O(C) Bond Cleavage: The Regulation of Adsorption. Journal of the American Chemical Society 2024, 146 (46), 32022-32031.
(58) Han, M. W.; Luo, Y. X.; Xu, L. T.; Chen, W.; Li, C. M.; Huang, Y. C.; Wu, Y. D.; Jiang, Y. M.; Wu, W. J.; Wang, R. Q.; Lu, Y. R.; Zou, Y. Q.; Wang, S. Y. Oxygen Vacancy Boosts Nitrogen-Centered Radical Coupling Initiated by Primary Amine Electrooxidation. Journal of the American Chemical Society 2024, 146 (49), 33893-33902.
(59) Guo, S. S.; Ma, M. Y.; Wang, Y. Q.; Wang, J. B.; Jiang, Y. B.; Duan, R. H.; Lei, Z. D.; Wang, S. Y.; He, Y. M.; Liu, Z. Spatially Confined Microcells: A Path toward TMD Catalyst Design. Chemical Reviews 2024, 124 (11), 6952-7006.
(60) Guan, Q. H.; Wang, J.; Zhuang, Q.; Zhang, J.; Li, L. G.; Jia, L. J.; Zhang, Y. Z.; Hu, H. F.; Hu, H. M.; Cheng, S.; Zhang, H.; Li, H. H.; Liu, M. N.; Wang, S. Y.; Lin, H. Z. Self-tandem catalysis of fast Mg2+ desolvation and sulfur conversions for ultrahigh-performance Mg-S batteries via serially-assembled atomic reactors. Energy & Environmental Science 2024, 17 (11), 3765-3775.
(61) Gong, L. Y.; Zhu, X. R.; Nga, T. T. T.; Liu, Q.; Wu, Y. J.; Yang, P. P.; Zhou, Y. Y.; Xiao, Z. H.; Dong, C. L.; Fu, X. Z.; Tao, L.; Wang, S. Y. Ultra-Low-Potential Methanol Oxidation on Single-Ir-Atom Catalyst. Angewandte Chemie-International Edition 2024, 63 (28).
(62) Fan, Y.; Liu, T. Y.; Yan, Y. H.; Xia, Z. C.; Lu, Y. X.; Pan, Y. P.; Wang, R. Q.; Xie, D. K.; Zhu, Z. H.; Nga, T. T. T.; Dong, C. L.; Jing, Y.; Li, Y. F.; Wang, S. Y.; Zou, Y. Q. Electrochemical synthesis of formamide by C-N coupling with amine and CO2 2 with a high faradaic efficiency of 37.5%. Chem 2024, 10 (8), 2437-2449.
(63) Du, S. Q.; Zhou, Y. Y.; Tao, L.; Wang, S. Y.; Liu, Z. Q. Hydrogen Electrode Reactions in Energy-Related Electrocatalysis Systems. Chemsuschem 2024, 17 (23), e202400714.
(64) Du, S. Q.; Yang, P. P.; Li, M. Y.; Tao, L.; Wang, S. Y.; Liu, Z. Q. Catalysts and electrolyzers for the electrochemical CO2 reduction reaction: from laboratory to industrial applications. Chemical Communications 2024, 60 (10), 1207-1221.
(65) Ding, J. J.; Lyu, Y. H.; Zhou, H. J.; Johannessen, B.; Zhang, X. R.; Zheng, J. Y.; Jiang, S. P.; Wang, S. Y. Efficiently unbiased solar-to-ammonia conversion by photoelectrochemical Cu/C/Si-TiO2 tandems. Applied Catalysis B-Environment and Energy 2024, 345, 123735.
(66) Dai, M. Y.; Ni, W. P.; Zeng, Z. L. Z.; Zhang, W.; Zhang, Y.; Wang, S. Y.; Zhang, S. G. Inert is not inactive: origin of carbon dioxide electroreduction activity over a carbon current collector-based electrode. Energy & Environmental Science 2024, 17 (4), 1531-1539.
(67) Cheng, Y.; Wang, H. P.; Jiang, T. W.; Guo, X. Y.; Kwofie, F.; Su, H. E.; Khotseng, L.; Zeng, W. F.; Zhang, Y.; Liu, Y. J.; Cai, W. B.; Wang, S. Y. Lutetium-Induced Ultrafine PtRu Nanoclusters with a High Electrochemical Surface Area for Direct Methanol Fuel Cells at Alleviated Temperatures. ACS Applied Materials & Interfaces 2024, 16 (16), 20352-20359.
(68) Cheng, B. X.; Zhan, H. Y.; Lu, Y. K.; Xing, D. N.; Lv, X. S.; Frauenheim, T.; Zhou, P.; Wang, S. Y.; Zou, Y. Q. Oxygen Defect Site Filling Strategy Induced Moderate Enrichment of Reactants for Efficient Electrocatalytic Biomass Upgrading. Advanced Science 2024, 11 (48), 2410725.
(69) Chen, W.; Zhang, L.; Xu, L. T.; He, Y. Q.; Pang, H.; Wang, S. Y.; Zou, Y. Q. Pulse potential mediated selectivity for the electrocatalytic oxidation of glycerol to glyceric acid. Nature Communications 2024, 15 (1), 2420.
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(92) Wei, X. X.; Liu, Y. Y.; Zhu, X. R.; Bo, S. W.; Xiao, L.; Chen, C.; Nga, T. T. T.; He, Y. Q.; Qiu, M. Y.; Xie, C.; Wang, D. D.; Liu, Q. H.; Dong, F.; Dong, C. L.; Fu, X. Z.; Wang, S. Y. Dynamic Reconstitution Between Copper Single Atoms and Clusters for Electrocatalytic Urea Synthesis. Advanced Materials 2023, 35 (18), 2300020.
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(96) Wang, Y. J.; Chen, D. W.; Chen, C.; Wang, S. Y. Electrocatalytic Urea Synthesis via C-N Coupling from CO2 and Nitrogenous Species. Accounts of Chemical Research 2023, 57 (2), 247-256.
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(98) Wang, H. F.; Xu, L. T.; Wu, J. C.; Zhou, P.; Tao, S. S.; Lu, Y. X.; Wu, X. W.; Wang, S. Y.; Zou, Y. Q. Boosting 5-hydroxymethylfurfural electrooxidation in neutral electrolytes via TEMPO-enhanced dehydrogenation and OH adsorption. Chinese Journal of Catalysis 2023, 46, 148-156.
(99) Wang, D. D.; Zhu, X. R.; Tu, X. J.; Zhang, X. R.; Chen, C.; Wei, X. X.; Li, Y. F.; Wang, S. Y. Oxygen-Bridged Copper-Iron Atomic Pair as Dual-Metal Active Sites for Boosting Electrocatalytic NO Reduction. Advanced Materials 2023, 35 (39), 2304646.
(100) Wang, D. D.; Chen, Z. W.; Wu, Y. J.; Huang, Y. C.; Tao, L.; Chen, J.; Dong, C. L.; Singh, C. V.; Wang, S. Y. Structurally ordered high-entropy intermetallic nanoparticles with enhanced C-C bond cleavage for ethanol oxidation. Smartmat 2023, 4 (1), e1117.
(101) Wang, D. D.; Chen, Z. W.; Gu, K. Z.; Chen, C.; Liu, Y. Y.; Wei, X. X.; Singh, C. V.; Wang, S. Y. Hexagonal Cobalt Nanosheets for High-Performance Electrocatalytic NO Reduction to NH3. Journal of the American Chemical Society 2023, 145 (12), 6899-6904.
(102) Wang, D. D.; Chen, C.; Wang, S. Y. Defect engineering for advanced electrocatalytic conversion of nitrogen-containing molecules. Science China-Chemistry 2023, 66 (4), 1052-1072.
(103) Shen, J. J.; Li, J.; Li, B.; Zheng, Y.; Bao, X. Z.; Guo, J. P.; Guo, Y.; Lai, C. L.; Lei, W.; Wang, S. Y.; Shao, H. Y. Ambient Fast Synthesis of Superaerophobic/Superhydrophilic Electrode for Superior Electrocatalytic Water Oxidation. Energy & Environmental Materials 2023, 6 (6), e12462.
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发明专利:
1. 复合催化材料及其制备方法、电极及其应用与电催化氢同位素分离的反应器
湖南大学
文国斌; 王双印; 梁海琪; 任博华
公开日期: 2025-04-11 申请日期: 2024-12-31 公开号: CN119800437A

2. 一种锶-氧化钌复合催化材料及其制备方法和应用
湖南大学; 湖南大学深圳研究院
王双印; 黄骋昊; 陈如; 何勇民; 费慧龙; 王特华; 陶李
公开日期: 2025-03-25 申请日期: 2024-12-30 公开号: CN119685870A

3. 一种钨亚氧化物和碳负载铂的催化材料及其制备和应用
湖南大学; 湖南大学深圳研究院
王双印; 郑俊一; 陈如; 何勇民; 费慧龙; 王特华; 陶李
公开日期: 2025-03-25 申请日期: 2024-12-30 公开号: CN119685856A

4. 应用于乙醇制氢的膜电极器件、质子交换膜电解池和乙醇制氢的方法
湖南大学重庆研究院
陶李; 王双印; 李苗雨
公开日期: 2025-03-18 申请日期: 2024-11-15 公开号: CN119640288A

5. 一种氧化铱-二氧化锰催化剂的制备方法和应用
湖南大学; 湖南大学深圳研究院
王双印; 郑俊一; 陈如; 何勇民; 费慧龙; 王特华; 陶李
公开日期: 2025-03-11 申请日期: 2024-12-30 公开号: CN119588349A

6. 光电化学钠介导固氮合成氨的装置及方法
湖南大学
郑建云; 丁晶晶; 王双印; 蒋三平; 王燕勇
公开日期: 2025-03-07 申请日期: 2024-12-02 公开号: CN119571348A

7. 一种高温聚合物电解质膜燃料电池的耐饥饿膜电极及制备方法
湖南大学; 湖大粤港澳大湾区创新研究院(广州增城)
王双印; 陶李; 林立光; 费慧龙; 陈如
公开日期: 2024-10-22 申请日期: 2024-06-26 公开号: CN118825294A

8. 浓缩设备及浓缩方法
湖南大学
王双印; 王特华; 王锋
公开日期: 2024-10-18 申请日期: 2024-08-16 公开号: CN118788145A

9. 电极及其制备方法和电化学提铀的方法
湖南大学
王燕勇; 王双印; 王燕静
公开日期: 2024-04-12 申请日期: 2024-02-29 公开号: CN117867595A

10. 一种高温聚合物电解质膜燃料电池催化剂的制备方法
湖南大学重庆研究院
陶李; 王双印; 李苗雨
公开日期: 2024-04-02 申请日期: 2024-01-31 公开号: CN117810469A

11. 膜电极、质子交换膜电解池及氢气和一氧化碳的制备方法
湖南大学
王双印; 陶李; 吴雨洁
公开日期: 2023-12-12 申请日期: 2023-09-14 公开号: CN117210839A

12. 光电阴极、光电阳极及光电化学合成氨的器件
湖南大学
吴彬彬; 王双印; 郑建云; 蒋三平; 丁晶晶
公开日期: 2023-07-04 申请日期: 2023-05-12 公开号: CN116377503A

13. 一种二氧化碳循环固氮的合成氨的方法
佛山仙湖实验室
蒋三平; 郑建云; 王双印; 张潇然; 陈晨
公开日期: 2023-06-13 申请日期: 2023-01-04 公开号: CN116254548A

14. 光电化学锂介导固氮合成氨的装置及方法
湖南大学
郑建云; 张潇然; 蒋三平; 王双印
公开日期: 2023-04-25 申请日期: 2023-01-06 公开号: CN116005176A

15. 光电化学电极及其制备方法、光电化学反应装置和尿素的制备方法
湖南大学
郑建云; 张潇然; 蒋三平; 王双印
公开日期: 2022-12-06 申请日期: 2022-08-22 公开号: CN115433959A

16. 一种芳香醛或脂肪醛类化合物的电催化制备方法
湖南大学
王双印; 邹雨芹; 徐雷涛
公开日期: 2022-10-21 申请日期: 2022-08-05 公开号: CN115216791A

17. 氧化铜纳米片及其制备方法、电催化硝酸根制氨的方法
湖南大学
邹雨芹; 王双印; 潘玉平
公开日期: 2022-10-18 申请日期: 2022-06-29 公开号: CN115196665A

18. 光电阴极及其制备方法、金属锂提取方法及提取装置
湖南大学
郑建云; 蒋莉; 黄爱彬; 王双印
公开日期: 2022-03-01 申请日期: 2021-11-22 公开号: CN114108037A

19. 通过电催化C-N还原偶联构建仲胺类化合物的方法
湖南大学
王双印; 杨春明; 周波; 逯宇轩; 孔志杰; 徐雷涛; 杨天仪; 邹雨芹
公开日期: 2022-03-01 申请日期: 2021-12-07 公开号: CN114108012A

20. 一种高熵氧化物材料的制备方法
湖南大学
王双印; 顾开智; 王东东; 王燕勇; 田静; 龙鹏; 李巍
公开日期: 2020-09-04 申请日期: 2020-06-16 公开号: CN111620681A
科研项目:
国家杰出青年基金(延续资助)、科技部重点研发计划、基金委原创探索项目、国家基金委重点支持项目、面上项目、青年项目,湖南省杰出青年基金项目,湖南省重点实验室项目等。

项目合作

合作意向:
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