郭玮,郑州大学化学学院副教授、博士生导师,近年来,研究集中在二次电池用高容量电极材料。先后主持国家自然科学基金面上和青年项目、河南省科技攻关等项目。在JACS,Angew. Chem.,Nat. Commun.,Adv. Funct. Mater.等权威期刊发表SCI论文50余篇。
联系方式:weiguo@zzu.edu.cn
学习经历:
1. 2000年9月-2004年7月,郑州大学,学士
2. 2004年9月-2007年7月,郑州大学,硕士
3. 2011年9月-2014年6月,南开大学,博士
工作经历:
1. 2007年7月-2017年12月,安阳师范学院,讲师
2. 2016年9月-2017年9月,美国印第安纳大学-普渡大学联合分校,博士后
3. 2019年5月-至今,郑州大学,副教授
研究方向:
电化学能源材料。
主持项目:
1、主持人,国家自然科学面上项目,60万,2022-2025年22179120
2、主持人,国家自然科学青年基金项目,25万,2020-2022年51902293
3、主持人,河南省高新技术领域科技攻关项目,10万,2021-2022年(已结项)
4、主持人,河南省高新技术领域科技攻关项目,10万,2016-2018年(已结项)
5、主持人,河南省高等学校重点科研项目,5万,2015-2017年(已结项)
代表论文:
2022
1. Xucheng Lv†, Qilong Yang†, Xie Zhang, Jiahan Song,Wei Guo*, Qi Wang*, “Acceleration of Cathode Interfacial Kinetics by Liquid Organosulfides in Lithium Metal Batteries”,Angew. Chem. Int. Ed. 2022, DOI: 10.1002/anie.202213160.
2. Kunchen Xie†, Junpeng Sun†, Jing Lian†, Yongzhu Fu*, andWei Guo*, “Tuning the Electrochemical Activity of Li-Se Batteries by Redox Mediator Additives”,Appl. Phys. Lett. 2022,121, 133904.
3. Qiliang Chen†, Linhong Li†, Wenmin Wang†, Xin Li,Wei Guo*, and Yongzhu Fu*, “Thiuram Monosulfide with Ultrahigh Redox Activity Triggered by Electrochemical Oxidation”,J. Am. Chem. Soc. 2022, 144, 18918-18926. (Cover)
4. Junpeng Sun†, Kai Zhang†, Yongzhu Fu, andWei Guo*, “Benzoselenol as an Organic Electrolyte Additive in Li-S Battery”,Nano Res. 2022, DOI: 10.1007/s12274-022-4361-z.
5. Mengnan Gao, Jiaqi Lan, Yongzhu Fu, andWei Guo*, “Biomass-derived Lenthionine Enhanced by Radical Receptor for Rechargeable Lithium Battery”,ChemSusChem 2022,15, e202200423. (Cover)
6.Wei Guo, Dan-Yang Wang, Qiliang Chen, and Yongzhu Fu*, “Advances of Organosulfur Materials for Rechargeable Metal Batteries” (Invited Review),Adv. Sci. 2022,9, 2103989.
7. Xucheng Lv,Wei Guo*, Jiahan Song, and Yongzhu Fu*, “Dynamic 1T-2H Mixed-phase MoS2 Enables High-performance Li-organosulfide Battery”,Small2022,18, 2105071.
2021
8. Jing Lian,Wei Guo*, and Yongzhu Fu*, “Isomeric Organodithiol Additives for Improving Interfacial Chemistry in Rechargeable Li-S Batteries”,J. Am. Chem. Soc.2021,143, 11063-11071.
9. Wei Guo†, Wanying Zhang, Yubing Si, Donghai Wang, Yongzhu Fu*, and Arumugam Manthiram, “Artificial Dual Solid-electrolyte Interfaces Based onin situ Organothiol Transformation in Lithium Sulfur Battery”,Nat. Commun.2021, 12, 3031.
10. Zhiyu Wang†, Xiang Li†,Wei Guo*, and Yongzhu Fu*, “Anion Intercalation of VS4 Triggers Atomic Sulfur Transfer to Organic Disulfide in Rechargeable Lithium Battery”,Adv. Funct. Mater. 2021, 202009875.
11. Dan-Yang Wang†, Ruilan Liu†,Wei Guo*, Gang Li, and Yongzhu Fu*, “Recent Advances of Organometallic Complexes for Rechargeable Batteries”(Review),Coordin. Chem. Rev. 2021, 429, 213650.
12. Qianqian Fan†,Wei Guo†, Xin Wang, Yubing Si, Bo Wang, and Yongzhu Fu*, “Inorganic Mediator toward Organosulfide Active Material: Anchoring and Electrocatalysis”,Adv. Funct. Mater. 2021,31, 2001493.
2020
13. Jiawei Zhao,Wei Guo,* and Yongzhu Fu*, “Diphenyl Diselenide as an Electrolyte Additive for Li-Se Batteries: Integrated Reaction of Performance Enhancement”,Mater. Today Energy2020,17, 100442.
14.Wei Guo and Yongzhu Fu*, “Electrochemistry of Electrode Materials Containing S-Se Bonds for Rechargeable Batteries” (Invited Review),Chem. Eur. J.2020,26, 13322-13331. (Selected by the Editorial Office for our Showcase of outstanding Review-type article http://www.chemeurj.org/showcase).
15. Bo Wang,Wei Guo*, and Yongzhu Fu*, “Anodized Aluminum Oxide Separators with Aligned Channels for High Performance Li-S Batteries”,ACS Appl. Mater. Interfaces 2020,12, 5831-5837.
16. Fengli Li, Yubing Si, Zhongjun Li,Wei Guo*, and Yongzhu Fu*, “Intermolecular Cyclic Polysulfide as Cathode Material for Rechargeable Lithium Batteries”,J. Mater. Chem. A 2020,8, 87-90.
专利:
一种原位氮掺杂多孔石墨烯及其制备方法。发明专利号:ZL 2014 1 0362351.7
一种曲面状二硫化钼纳米片及其制备方法。发明专利号:ZL 2014 1 0361617.6
一种二元掺杂石墨烯及其制备方法。发明专利号:ZL 2014 1 0380569.5
一种磷掺杂石墨烯及其制备方法。发明专利号:ZL 2014 1 0360675.7
一种氮化碳及其制备方法。发明专利号:ZL 2014 1 0361328.6
一种球状二硫化钼复合材料及其制备方法和应用。发明专利号:ZL 2015 1 0072736.4
一种碳包覆二氧化钼介孔材料及其制备方法和应用。发明专利号:ZL 2015 1 0454356.7