
基本情况
出生年月:1992年07月
职称:副教授
最高学位:博士研究生
主要研究方向:新能源燃料电池和锌离子电池、氢能
导师类别:学术型硕导/专业型硕导
工作单位:船海与能源动力工程学院
工作地址:武汉理工大学余家头校区西配楼315办公室
Email: yuao7676@whut.edu.cn
教育及工作经历
2026年06月-至今,武汉理工大学,船海与能源动力工程学院,副教授
2023年02月-2026年05月,美国中佛罗里达大学,博士后
2025年11月-2026年02月,美国Argonne National Lab,APS User
2024年09月-2026年05月,美国麻省大学,Research Fellow
2022年07月-2023年02月,湖北九峰山实验室,高级工程师
获奖情况
1.2023-2026年,美国杰出博士后
2.2021年,华中科技大学国家奖学金
3.2020年“International e-Conference on ES Energy and Environment”最佳口头汇报奖。
近期主持科研项目
1、2023.02–2026.05,美国杰出博士后研究,美国政府资助项目(项目经费:约21万美元,折合人民币约151万元),主持(项目负责人)。
2、2023.02–2024.02,UCF P3 Research Fund,中佛罗里达大学科研基金(项目经费:0.5万美元,折合人民币约3.6万元),主持(项目负责人)。
3、2023.07–2026.12,高功率密度直接乙醇燃料电池关键技术研究,企业横向项目(项目经费:约70万美元,折合人民币约504万元),核心成员,负责氧催化剂及膜电极开发。
4、2023.12–2024.09,高功率密度直接乙醇燃料电池关键技术研究(二期),企业横向项目(项目经费:约59万美元,折合人民币约425万元),核心成员,负责氧催化剂及膜电极开发。
5、2023.12–2024.05,水系锌离子电池大批量生产技术开发,企业横向项目(项目经费:约3.9万美元,折合人民币约28万元),主持(项目负责人),负责软包电池开发。
近期代表性学术成果
[1]Ao Yu, Yang Yang, et.al, Active site design enables industrial scale H2O2 electrosynthesis with metal-free catalysts, Nature Communications, (2026), 17, 4474.
[2]Ao Yu*, Jinfa Chang*, et al, High-capacity and durable polyimide/reduced graphene compo-site for aqueous proton batteries, Science China Chemistry, (2026), 69(6): 3126-3130. (IF = 9.8, Q1, Top).
[3] Yuting Shi, Shi Jia*, Ao Yu*, and Minjie Shi*, et.al, Capacitive Deionization for Targeted Anion Removal: Mechanisms, Advances, and Future Directions, Journal of Materials Chemistry A, (2026), DOI: 10.1039/D6TA02244H. (第一通讯) (IF = 9.4, Q1, Top).
[4]Ao Yu, Yang Yang. Atomically Dispersed Metal Catalysts for Oxygen Reduction Reaction: Two‐Electron vs. Four‐Electron Pathways. Angewandte Chemie, (2025) e202424161. (IF = 16.6, Q1, Top).高被引论文
[5]Ao Yu, Yang Yang, Fang-Fang Li, et.al, Direct cathodic polarization preparation of ambient CO2-derived oxygen-functionalized carbons for electro-production of H2O2,Applied Catalysis B: Environment and Energy, (2025) 125109. (IF = 21.1, Q1, Top).
[6]Ao Yu*, Yang. Yang*, Design of Electrolyzers for Sustainable H2O2Electrosynthesis, Chem catalysis, (2025) 101516. (IF = 11.6, Q1, Top).
[7]Ao Yu, Ping Peng, Fang-Fang Li, et.al, Fullerene: A Potential Platform for Hydrogen Evolution Reaction, ChemSusChem, (2025), accepted.
[8] Sachin Kumar*, Ao Yu*, Yang Yang*, Current challenges and strategies for advancing seawater electrolyzer designs, Trends in Chemistry, 7 (2025), 511-528. (IF = 13.6, Q1).通讯作者
[9] Wei Zhang#, Ao Yu#, Yi Cui and Yang Yang, et.al, Dynamic bubbling balanced proactive CO2capture and reduction on triple-phase interface nanoporous electrocatalyst, Journal of the American Chemical Society, (2024) (Co-first author) (IF = 14.6, Q1, Top).
[10]Ao Yu, Yang Yang, et.al, Molten Salt Electrolytic CO2-Derived Carbon-Based Nanomaterials for Energy Storage and Electrocatalysis: A Review. ACS Appl. Nano Mater. (2024). (IF = 5.3, Q2, Cover paper).
[11]Ao Yu, Yang Yang, et.al. Recent advances in electrosynthesis of H2O2via two-electron oxygen reduction reaction, Chem. Commun., 60 (2024), 5232-5244. (IF = 4.3, Q2).
[12]Ao Yu, Fang-Fang Li, Yang. Yang, et.al, Bi‐Directional Electrolytic Reduction of CO2to Mesoporous Carbons with Regulated Structure and Surface Functional Groups for Zn‐ion Capacitors, Advanced Functional Materials, (2023) 2309666. (IF = 19.0, Q1, Top).
[13]Ao Yu, W. Zhang, N. Joshi, Yang. Yang, Recent Advances in Anode Design for Mild Aqueous Zn-ion Batteries, Energy Storage Materials, (2023) 103075. (IF = 20.2, Q1, Top).
[14]Ao Yu, Peng Peng, Fang-Fang Li, et.al, In-situ Ni-oxidation-assisted coupling reduction of NiO and CO2to synthesize core-shell Ni@ octahedral carbon with energy storage properties, Chemical Engineering Journal, 462 (2023) 142268. (IF = 13.6, Q1, Top).
[15]Ao Yu, Ping Peng, Fang-Fang Li, et.al, Transformation of post-synthesized F-MOF to Fe/N/F-tridoped carbon nanotubes as oxygen reduction catalysts for high power density Zn-air batteries, Chinese Chemical Letters, 34 (2023) 107860. (IF = 9.4, Q1, Top).
[16]Ao Yu, Yang Yang, et.al, Advances in ORR, OER, and HER of Fullerenes and Derivatives: From DFT Calculations to Experimental Identification, Advanced Sensor and Energy Materials, (2023), 100061. (IF = 10.5, Q1).
[17]Ao Yu, Peng Peng, Fang-Fang Li, et.al, Conversion of CO2 to defective porous carbons in one electro-redox cycle for boosting electrocatalytic H2O2 production, Applied Catalysis B: Environment and Energy, 307 (2022) 121161. (IF = 21.1, Q1, Top).
[18]Ao Yu, Ping Peng, Fang-Fang Li, et.al, Fullerene-Derived Carbon Nanotubes and Their Electrocatalytic Properties in Oxygen Reduction and Zn–Air Batteries, ACS Applied Materials & Interfaces, 14 (2022) 42337-42346. (IF = 8.5, Q1, Top).
[19]Ao Yu, Ping Peng, Fang-Fang Li, et.al, Electrochemically controlled in situ conversion of CO2to defective carbon nanotubes for enhanced H2O2production, Nanoscale, 13 (2021) 15973-15980. (IF = 5.8, Q1).
[20]Ao Yu, Ping Peng, Fang-Fang Li, et.al, Bio‐inspired and Eco‐friendly Synthesis of 3D Spongy Meso‐Microporous Carbons from CO2for Supercapacitors, Chemistry–A European Journal, 27 (2021) 10405-10412. (IF = 3.9, Q2).
[21]Ao Yu, Ping Peng, Fang-Fang Li, et.al, Sustainable carbons and fuels: recent advances of CO2conversion in molten salts, ChemSusChem, 13 (2020) 6229-6245. (IF = 7.5, Q1).
[22]Ao Yu, Ping Peng, Yang Yang, Fang-Fang Li, et.al, Fullerene-metalloporphyrin co-crystal as efficient ORR electrocatalyst precursor for Zn-air batteries. Carbon Future1 (2024) 9200009.
[23]Ao Yu, Ping Peng, Fang-Fang Li, et.al, Electrochemical Reduction of Carbon Dioxide to Carbon Materials for Two⁃ Electron Oxygen Reduction Reaction, Chinese Journal of Applied Chemistry, 39 (2022) 657.
[24] Wenli Luo, Zhiming Shi*, Wenbin Wang, Ao Yu*;Energy & Environment Management, 1 (2025), 59-65.通讯作者
[25] Tianjiao huang, Wu Xia*, Fnu Joshua, Vaishnavii Ponnusamy, Ao Yu*, Interfacial p–n Coupling in Cu3N/1T-MoS2 Heterojunctions Drives Efficient and Durable Acidic Hydrogen Evolution. Frontiers in Energy Research (2025) 1683318.通讯作者
招生专业
硕士:0858能源动力;0807动力工程及工程热物理;
学术兼职
(1)申请人担任国际电化学学会会员(ECS)会员
(2)申请人受邀担任国产优秀期刊Exploration杂志青年编委(IF=30)
(3)申请人受邀担任Energy&Environment Management杂志青年编委;
(4)申请人受邀担任Exploration: Environment and Resource杂志青年编委;
(5)申请人受邀担任Angewandte Chemie, Advanced Composites and Hybrid Materials, ACS series journals等国际顶级期刊杂志审稿人。
申请人简介如下:
申请人从华中科技大学博士毕业后有超过三年的全职海外科研工作经历。申请人在受美国“杰出博士后P3项目”支持,在中佛罗里达大学纳米科学中心(NSCT)杨阳教授课题组从事博士后研究工作(2023年2月2026年5月),期间还担任美国Argonne国家实验室APS User(2025年11月2026年2月)。同时,申请人在美国马萨诸塞大学阿默斯特分校林舟教授课题组担任Research Fellow(2024年9月至2026年5月)。另外,申请人联合俄勒冈州立大学冯振兴教授撰写了美国阿贡国家实验室和劳伦斯伯克利国家实验同步辐射光源项目申请,并获批。申请人博后期间主持项目三项(约24.5W美元),作为主要成员参与美国企业项目研发两项(约129W美元)。近五年,申请人在国际顶级刊物上发表SCI论文41篇,以第一/共一/通讯作者发表论文25篇,以第一作者发表论文20篇,包括Nat. Commun.、J. Am. Chem. Soc.以及Angew. Chem. Int. Ed._等。申请中国专利3项,授权2项;申请美国专利2项。受邀担任高分期刊Exploration(IF=30)青年编委。受邀在“International eConference on ES Energy and Environment”会议做口头汇报,并获得最佳口头汇报奖。科研成果被EurekAlert、TechXplore和nanowerk专题点评报道。申请人还曾获华中科技大学博士国家奖学金,优秀博士毕业生,三好研究生等荣誉。申请人深度响应国家“十五五”规划战略,聚焦高性能氧还原催化剂的设计及其工程化应用。
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