唐伟建

发布者:院办公室发布时间:2026-04-27浏览次数:433

姓名:唐伟建

出生年月:19938

学历:博士

职称:副研究员

政治面貌:中共党员

邮箱:wjtang@hfit.edu.cn

工作和和教育经历

2025.06-至今,合肥理工学院,新能源工程学院,副研究员

2023.12-2025.06,合肥综合性国家科学中心能源研究院,副研究员

2021.07-2023.12,合肥综合性国家科学中心能源研究院,助理研究员

2016.09-2021.06,合肥工业大学,材料化学工程专业,工学博士

2012.09-2016.07,安徽科技学院,应用化学专业,理学学士

主要研究领域、方向

新型离子电池关键材料与器件

主要学术成就

至今已在Appl. Catal. B Environ.Energy Storage Mater.J. Energy Chem.Chem. Eng. Sci.ACS Appl. Mater. Interfaces等国内外重要学术刊物发表研究论文30余篇,其中含高被引论文1篇、封面论文3篇、期刊年度优秀论文1篇,单篇最高引用超150次。申请国家发明专利10余项,其中授权专利4项。主持安徽省自然科学基金青年项目、安徽省高校科学研究重点项目;作为核心成员参与国家自然科学基金重大集成项目、安徽省科技重大专项及合肥综合性国家科学中心能源研究院重大培育项目等。担任安徽理工大学校外兼职硕士生导师,以及Nano EnergyComposites Part BJ. Energy Storage等国际期刊审稿人。2022年获安徽省优秀博士学位论文。


一、 承担科研课题

1)安徽省自然科学基金青年项目,项目号:2308085QB698万元,主持,2023.09-2025.08

2)安徽省高校科学研究重点项目,项目号:2025AHGXZK3133020万元,主持,2026.01-2027.12

3)合肥理工学院人才科研基金项目,项目号:2025KY4340万元,主持,2025.10-2028.9

二、发表论文

[1]Mingjuan Fan, Fenglei Wang, Weijian Tang*, Qingping Wang, Jiafeng Cao, Maoqin Qiu*, Wenming Li*, Wentuan Bi*. In-situ exsolved Ru-Fe alloy on Sr2Fe1.4Ru0.1Mo0.5O6-δ for enhanced ammonia decomposition activity and durability in protonic ceramic fuel cells. Applied Catalysis B: Environment and Energy, 2026, 391: 126664.

[2]Yisheng Yang, Qingping Wang, Weijian Tang*, Wenming Li*. Conformal Al2O3 coating engineering enables ambient-air-stable Li5FeO4 for efficient cathode pre-lithiation. Journal of Energy Storage, 2026, 164: 122238.

[3]Zijin Shu, Weijian Tang*, Biteng Cao, Peijun Cai, Juxuan Ding*, Maoqin Qiu, Tao Qiao, Jiawei Zhu*, Yejun Wan, Ying Wang, Yunxiang Zhai, Wenming Li*. In-situ engineering of a NASICON Li1.3Ga0.3Ti1.7(PO4)3 layer to boost interfacial kinetics and high-voltage stability of single-crystal Ni-rich cathodes. Journal of Electroanalytical Chemistry, 2026, 1009: 119984.

[4]Weijian Tang*, Zijin Shu, Afei Li, Xiaoqin Huang, Wenming Li*. Enhancing structural integrity and long-term cycling stability of high-voltage single-crystalline Ni-rich cathodes via surface/subsurface dual-functional modification engineering. Energy Storage Materials, 2025, 77: 104185.

[5] Weijian Tang, Chengzhi Hu, AFei Li, Xiaoqin Huang, Zhangxian Chen, Jianhui Su, Weixin Zhang*. Constructing a stable interface on Ni-rich LiNi0.8Co0.1Mn0.1O2 cathode via lactic acid-assisted engineering strategy. Journal of Energy Chemistry, 2024, 90: 412-422.

[6] Weijian Tang#, Guojun Zhou#, Chengzhi Hu, Afei Li, Zhangxian Chen*, Zeheng Yang, Jianhui Su, Weixin Zhang*. Regulating the anion redox and suppressing the structural distortion of cation-disordered rock-salt cathode materials to improve cycling durability through chlorine substitution. ACS Applied Materials & Interfaces, 2023, 15: 17938-17946.

[7]Weijian Tang, Afei Li, Guojun Zhou, Zhangxian Chen*, Zeheng Yang, Jianhui Su, Weixin Zhang*. Structural stabilization of cation-disordered rock-salt cathode materials: coupling between a high-ratio inactive Ti4+ cation and a Mn2+/Mn4+ two-electron redox pair. ACS Applied Materials & Interfaces. 2022, 14: 38865-38874.

[8]Weijian Tang, Zhangxian Chen*, Haijian Huang*, Muhammad Irfan, Cheng Huang, Zeheng Yang, Weixin Zhang*. PVP-bridged ɤ-LiAlO2 nanolayer on Li1.2Ni0.182Co0.08Mn0.538Ocathode materials for improving the rate capability and cycling stability. Chemical Engineering Science. 2021, 229: 116126.

[9] Weijian Tang, Guojun Zhou, Jun Cao, Zhangxian Chen, Zeheng Yang, Haijian Huang, Yifan Qu, Cong Li, Weixin Zhang*, Honglai Liu*. Recent advances of mesoscale-structured cathode materials for high energy density lithium-ion batteries. ACS Applied Energy Materials, 2021, 4: 2962-2975.

[10] Weijian Tang, Zhangxian Chen*, Fan Xiong, Fei Chen, Cheng Huang, Qiang Gao, Tongzhen Wang, Zeheng Yang*, Weixin Zhang*. An effective etching-induced coating strategy to shield LiNi0.8Co0.1Mn0.1O2 electrode materials by LiAlO2Journal of Power Sources, 2019, 412: 246-254.

[11] Yifan Qu#Weijian Tang#, Honglei Liu, Cong Li, Lei Zou, Zhangxian Chen, Zeheng Yang, Jianhui Su, Weixin Zhang*. Threefold modification with dual-cation doping and LiVO3 coating boosts long-term cyclability and rate capability of Li-rich cathode materials for lithium-ion batteries. Industrial & Engineering Chemistry Research, 2023, 62: 10467-10476.

[12]唐伟建,张卫新杨则恒陈章贤. LiFePO4正极材料的制备与改性研究进展电源技术, 2020, 44: 1077-1085.

三、发明专利

[1]唐伟建,李阿飞,黄小琴,张卫新,苏建徽。一种复合正极补锂剂及其制备方法、正极片和锂离子电池,公开号:CN119315135A

[2]唐伟建,李阿飞,邢辉,黄小琴,李亚兰,张卫新,苏建徽。一种复合异质结构单晶富镍正极材料及其制备方法和应用,公开号:CN118738350A

[3]唐伟建,张卫新,苏建徽,陈章贤,黄小琴。一种复合正极材料及其制备方法和应用,公开号:CN116741966A

[4]唐伟建,张卫新,陈章贤,黄小琴,苏建徽,吴定国。一种NASICON型快离子导体Li1+NYNZr2-N(PO4)3包覆单晶高镍三元复合材料的制备方法,公开号:CN116632205A

[5]陈章贤,唐伟建,杨则恒,张卫新。一种基于均相共沉淀体系制备铝酸锂包覆锂离子电池富锂材料的方法,专利号:ZL201810921048.4

[6] 陈章贤,张秋歌,唐伟建,杨则恒,张卫新,王长平,陈凯,刘治保。一种利用共价界面工程策略制备锂快离子导体类材料包覆高镍三元层状氧化物的方法,专利号:ZL202110382960.9

[7]杨则恒,吴兆国,张卫新,唐伟建。一种水热辅助共沉淀策略制备锂离子电池三元正极材料的方法,专利号:ZL201911155452.6

[8]张卫新,杨则恒,黄城,陈章贤,唐伟建。一种由废旧锂离子电池再生制备暴露{010}晶面的片状单晶三元电极材料的方法,专利号:ZL202110534091.7