
个人信息简介
姓名:袁萌伟 学历:博士 职称:副教授 电子邮箱:mwyuan@mail.bnu.edu.cn
陕西咸阳人,理学博士,现任北京师范大学文理学院化学系副教授。在《J. Am. Chem. Soc.》、《Angew. Chem. Int. Ed.》、《ACS NANO》、《Adv. Energy Mater.》、《Energy Environ. Mater.》等刊物发表学术文章多篇。
教育背景
2011.09-2015.06 兰州大学,放射化学,理学学士
2015.09-2020.06 北京师范大学,无机化学,理学博士
工作经历
2020.07-2022.06 北京师范大学,物理学系,博士后
2022.07-2023.12 北京师范大学,自科高研院,特聘副研究员
2024.01-2025.06 北京师范大学,文理学院化学系,特聘副研究员
2025.07-至今 北京师范大学,文理学院化学系,副教授
研究方向
金属空气电池关键材料及添加剂,固态电解质及器件,纳米功能材料
科研项目
1.基于HoMS诱导的Li2O2电合成-氧化还原介质耦合锂空气电池构筑, 国家自然科学基金面上项目,2027-2030,主持
2. 锂取代富金属空位型层状硫磷化物的合成、结构及锂离子输运性能研究,国家自然科学基金,2024-2026,主持
3. 自催化锂空气电池体系构建及反应机制的原位X射线吸收光谱研究,广东省基础与应用基础研究基金项目,2025-2027,主持
4. 新型多金属氧/硫簇氧化还原媒介体创制及金属空气电池性能研究,北京师范大学人才引进项目(青年英才),2022-2025,主持
5. Investigate the structure-related properties of surface/interface for Ni, Co, Mn-based metal organic framework and metal organic molecule electrocatalysts in Lithium-air battery with X-ray absorption spectroscopy,法国SOLEIL同步辐射光源ODE线站标准机时项目,项目编号:20231753,主持
6. Dopant-centered electronic and structural evolution in transition-metal-doped Li2-xO2 during Li-air battery operation studied by operando X-ray absorption spectroscopy,法国SOLEIL同步辐射光源ODE线站标准机时项目,项目编号:20260168,主持
7. Investigate the structure-related properties of surface/interface for Co-based electrocatalysts in Lithium-air battery with X-ray absorption spectroscopy,法国SOLEIL同步辐射光源ODE线站标准机时项目,项目编号:20230765,参与
8. Solution-phase electronic and coordination evolution of cobalt-based redox mediators in Li-air batteries studied by operando X-ray absorption spectroscopy,法国SOLEIL同步辐射光源ODE线站标准机时项目,项目编号:20260166,参与
课题组条件
锂空气电池制作与电池性能测试设备、原位XRD、原位红外光谱、原位X射线吸收谱
发表论文
1. Li S., Zeng W., Huang J., Xiong W., Wang N., Bai F., Zhang C., Kong Q., Shi K., Su P.*, Zheng X.*, Yuan M.*, Ma S.*, Yao H.*, Ligand effect-mediated electronic structure optimization of active sites in 2D-MOFs for enhanced Li-O2 battery performance, J. Mater. Sci. Technol, 2027, 284, 101.
2. Xiong W., Zheng X.*, Yuan M.*, Application and Challenges of Polymer-Based Electrolytes in Solid-State Lithium-Air Batteries, 2026, 38, 465.
3. Xu J., Zheng X., Kong Q., Zhang J., Yin J., Zhao J., Zhang C., Su P., Yuan M.*, Sun G.*, Tidal-Like Self-Evolution of Co–Mn Bimetallic Sites Enables Highly Efficient Lithium-Oxygen Batteries, Adv. Funct. Mater. 2026, 36, e77004.
4. Zhao J., Yin J., Xiong W., Li S., Zhang C., Xu J.*, Zheng X.*, Yuan M.*, Rationally regulating the metal-supports interaction in bimetallic components to promote LiOx conversion kinetics, J. Energy Storage 2026, 153, 121077.
5. Wang Q., Zhang R., Zheng X.*, Jiang H.*, Wu Z., Fu Z., Yuan M.*, Solid-state redox mediator engineering of the Ag cluster/CoMoO4 heterostructure for accelerated LiOx conversion kinetics, Mater. Chem. Front. 2026, 10, 2614.
6. Xiong W., Chen X., Duan H., Xu J., Sang B., Jiang H., Wu Z., Fu Z., Su F., Zhang C., Zheng* X., Yuan* M., In-situ constructing the enhanced Li-O2 batteries with the coupling effect of self-synthesis electrocatalyst and redox mediator, Inorg. Chem. Commun. 2026, 186, 116187.
7. Zheng X.#, Yuan M.#, Su P.#, Kong Q., Xu J., Sun G.*, A Self-Catalysis System Coupled with Redox Mediator Effect for Ultra-Long Cycle Life Li-O2 Batteries. Angew. Chem. Int. Ed. 2025, e202504554.
8. Zhang Y., Chen C., He C., Yang Q., Tan X., Xu Z., Jiang Y., Yuan M.*, Nan C. *, Chen C.*, Atomically Dispersed Ta-O-Co Sites Capable of Mitigating Side Reaction Occurrence for Stable Lithium-Oxygen Batteries. J. Am. Chem. Soc. 2025, 147, 4578-4586.
9. Su P., Zheng X., Li S., Xu J., Jiang H., Kong Q., Zeng W., Jia F., Zhang J., Bai F.*, Su W., Wang J., Zhang C.*, Wu Z., Zhang W.*, Yuan M.*, Rationally tuning the oxidation state of the open active sites in Co-based MOFs to enhance the kinetics of Li-O2 batteries, Rare Met. 2025, 44, 4595.
10. Han S.#, Yao H.#, Wang H.#, Wang Z., Li S., Sun Y.*, Yuan M.*, Ma S.*, Polymetallic sulfide MSx (M =Ni, Fe, and Mo) microspheres for highly selective extraction of Ag+ over Cu2+ and reduction of Ag+ ions to Ag0 metals, Sep. Pur. Technol. 2025, 359, 130568.
11. Zheng X.#, Yuan M.#, Xin R., Wang X., Xu J., Sun G.*, Zhu J.*, Rational design of Co sub-nano clusters by electronic metal-support interaction for inducing Li2O2 growth, Nano Energy 2024, 131, 110138.
12. Zheng X.#, Yuan M.#, Su P., Li N., Li Z., Li F., Li H.*, Sun G.*, MXenes anchored Co2N/Co3O4 heterostructure with electron pulling effect promoting conversion of LiOx moieties. Chem. Eng. J. 2024, 482, 148916.
13. Zheng X.#, Yuan M.#, Xu J., Li Z., Nan C., Sun G.*, Coupling interface constructions of hollow Co-Mo mixed multiple oxidation states heterostructure for high-performance aprotic Li-O2 battery. Nano Res. 2024, 17, 4100−4107.
14. Lin Y.#, Bao J.#, Zhang S.#, Zhang Y., Qiu J., Quan Y., Li Y., Yuan M.*, Sun G.*, Nan C.*, Ruthenium highly dispersed in low crystallinity cobalt oxide as an efficient catalyst for Li-O2 battery, J. Power Sources, 2024, 623, 235394.
15. Zheng X.#, Yuan M.#, Li H.*, Sun G.*, In situ construction of a P-doped TiO2/Ti3C2Tx heterostructure with local site optimization to improve Li-O2 battery performance. Appl. Surf. Sci. 2024, 659, 159880.
16. Su W.#, Zheng X.#, Xiong W.#, Ouyang Y., Zhang Z., Zeng W., Duan H., Chen X., Su P.*, Sun Z., Yuan M.*, Open Active Sites in Ni-Based MOF with High Oxidation States for Electrooxidation of Benzyl Alcohol, Inorg. Chem. 2024,63,12572−12581.
17. Yuan M.#, Sun Z.#, Yang H., Wang D., Liu Q., Nan C., Li H., Sun G.*, Chen S.*, Self‐Catalyzed Rechargeable Lithium‐Air Battery by in‐situ Metal Ion Doping of Discharge Products: A Combined Theoretical and Experimental Study. Energy Environ. Mater., 2023, 6, e12258.
18. Zheng X.#, Yuan M.#, Zhao Y., Li Z., Shi K., Li H.*, Sun G.*, Status and Prospects of MXene-Based Lithium-Oxygen Batteries: Theoretical Prediction and Experimental Modulation, Adv. Energy Mater. 2023, 13, 20220419.
19. Lin L., Xin R., Yuan M., Sun Z.*, et al. Revealing Spin Magnetic Effect of Iron-Group Layered Double Hydroxides with Enhanced Oxygen Catalysis, ACS Catal. 2023, 13, 1431.
20. Li Y.#, Yuan M.#, Yang H.#, Shi K., Sun Z., Li H., Nan C., Sun G.*, Quantitative decorating Ni-sites for water-oxidation with the synergy of electronegative sites and high-density spin state, Appl. Catal. B-Environ. 2023, 323, 122167.
21. Yuan M.*, Zheng X., Xu J., Ni Q., Luo L., Cai Z, Sun Z., Lin L., Sun G., A Review of the Structural Design of Anode Materials in Sodium-Ion Batteries Based on MXenes and Their Composites. Batteries, 2023, 9, 48.
22. Yang, L.#, Xie L.#, Chu M.#, Wang H., Yuan, M.*, Yu Z., Wang C., Yao H.*, Islam S.M. Shi K., Yan D., Ma S.*, Kanatzidis M.G.*, Mo3S132‐ Intercalated Layered Double Hydroxide: Highly Selective Removal of Heavy Metals and Simultaneous Reduction of Ag+ Ions to Metallic Ag0 Ribbons, Angew. Chem. Int. Ed., 2022, 61, 202112511.
23. Yuan M., Sun Z., Wu Z., Wang D., Yang H., Nan C., Li H., Zhang W.*, Sun G.*, Tuning the Oxygen Vacancy of Mixed Multiple Oxidation States Nanowires for Improving Li-Air Battery Performance, J. Colloid Interf. Sci., 2022, 608, 1384-1392.
24. Zheng X.#, Yuan M.#, Guo D., Wen C., Li X., Huang X., Li H.*, Sun G.*, Theoretical Design and Structural Modulation of the Surface-Functionalization Ti3C2Tx MXene-Based Heterojunction Electrocatalyst for Li-Oxygen Battery, ACS Nano, 2022, 16, 4487-4499.
25. Zhang S.#, Qiu J.#, Zhang Y.#, Lin Y., Liu R.*, Yuan M.*, Sun G.*, Nan C.*, Crystal Phase Conversion on Cobalt Oxide: Stable Adsorption toward LiO2 for Film-Like Discharge Products Generation in Li-O2 Battery, Small, 2022, 202201150.
26. Song Y.#, Yuan M.#, Su W., Guo D., Chen X., Sun G.*, Zhang W.*, Ultrathin Two-Dimensional Bimetal-Organic Framework Nanosheets as High-Performance Electrocatalysts for Benzyl Alcohol Oxidation, Inorg. Chem., 2022, 61, 19, 7308-7317.
27. Wang D.#, Yuan M.#, Xu J., Li Y., Shi K., Yang H., Li H., Sun G.*, Highly Active Atomically Dispersed Co-Nx Sites Anchored on Ultrathin N-Doped Carbon Nanosheets with Durability Oxygen Reduction Reaction of Zinc-Air Batteries, ACS Sustainable Chem. Eng., 2021, 9, 50, 16956-16964.
28. Yuan M.#, Sun Z #, Lin L., Yang H., Wang D., Nan C., Sun G.*, Li H.*, Ma S.*, Atomically dispersed metal sites anchored in the N-doping carbon nanosheets to boost the Li storage performance. Mater. Chem. Front. 2020,4, 2157-2167.
29. Sun Z.#, Yuan M.#, Shi K., Liu Y., Wang D., Nan C., Li H., Sun G.*, Yang X., Engineering Li-ion Embedded into NiFe-LDHs Lattice Activate Laminate Ni2+ Sites as High Efficiency Oxygen Evolution Reaction Catalysts. Chem. Eur. J. 2020, 26, 7244-7249.
30. Li Y.#, Yuan M.#, Li H., Sun G.*, In situ synthesis of CoFe2O4 nanocrystals decorated in mesoporous carbon nanofibers with enhanced electromagnetic performance. J. Alloy. Compd. 2020, 826, 154147.
Yuan M.#, Yao H.#, Xie L., Liu X., Wang H., Islam S., Shi K., Yu Z., Sun G., Li H., Ma S.*, Kanatzidis M.*, Polypyrrole-Mo3S13: An Efficient Sorbent for the Capture of Hg2+ and Highly Selective Extraction of Ag+ over Cu2+, J. Am. Chem. Soc. 2020, 142, 1574.
发明专利
1. 孙根班,袁萌伟等,Fe7Ni3纳米材料的制备方法与应用,201611152632.5 授权
2. 马淑兰,袁萌伟,孙根班等,氧化亚钴纳米晶-石墨烯复合材料、其制备方法及用途, 201611139805.X 授权
3. 孙根班,袁萌伟等,一种锂-氧气/空气电池及其制备方法,201910108077.3 授权
4. 孙根班,袁萌伟等,一种气氛电池正极催化剂材料及其制备方法,201910108075.4 授权
5. 孙根班,袁萌伟等,一种锂-二氧化碳电池及其制备方法,201910108074.X 授权
6. 孙根班,袁萌伟,孙泽民,一种具有金属空气电池自催化活性的过渡金属掺杂型化合物,202110543667.6 授权
7. 孙根班,袁萌伟,孙泽民,一种具有自催化活性的快充锂空气电池,202110692439.5授权
8. 姚惠琴,杨利肖,袁萌伟,马淑兰等,一种用于吸附重金属离子的层状双金属氢氧化物复合体及其制备方法和应用,202110870639.5 授权
9. 姚惠琴,马淑兰,袁萌伟等,一种Ppy复合体及其制备方法和应用201910924818.5 授权
教学工作
本科生:《普通化学实验》、《谱学原理基础》
研究生:《功能材料基础》、《现代谱学原理与应用》
荣誉获奖
1.北京市科学技术奖-自然科学二等奖(第二完成人)
2.2021年北京市科协青年人才托举