曾荣华
职称:研究员
职务:无
联系邮箱:zengronghua@m.scnu.edu.cn
研究方向:电化学(包括锂/钠离子电池等二次电池)
招生方向:物理化学博士、物理化学硕士、材料与化工硕士、学科化学硕士
理学博士,研究员,博士生导师
广东省国际科技合作基地-储能材料国际联合研究中心主任
高能高安全性动力锂离子电池电解液及隔膜材料与制备技术国家地方联合工程研究中心核心成员
2012.7beat365体育官方网站,化学与环境学院,理学博士
2005.7 beat365体育官方网站,化学与环境学院,理学硕士
2000.7.beat365体育官方网站,化学系,理学学士
2005.9-至今 beat365体育官方网站,beat365体育官方网站
2013.05-2015.12,华南理工大学与东莞市迈科科技有限公司联合培养博士后
研究生课程:物理化学进展;
本科生课程:材料科学基础实验;应用物理化学实验。
1. 广东省国际科技合作基地-储能材料国际联合研究中心(2023A0505090009), 2024.01-2026.12,在研,主持;
2. 广州市重点研发计划项目(2023B03J1278),2023.04-2026.03,在研,主持;
3. 国家基金面上项目(21875076),2019.01-2022.12,结题,主持;
4. 广东省科技计划项目(国际合作项目)(2018A050506077),2018,12-2021,05,结题,主持;
5. 广东省科技计划项目(国际合作项目)(2016A050502054),2016.01-2017.12,结题,主持;
6. 广东省科技计划项目(广东省协同创新与平台环境建设专项项目)(2015A040404043),2015.01-2016.12,结题,主持;
7. 中国博士后基金项目,(2014M552190),2014.05-2015.12,结题,主持;
8. 广州市科技计划项目,(201609010096), 2016.07-2017.12,结题,主持;
9. 广东省科技特派员项目,(GDKTP2020021500),2020.10-2021.12,结题,主持;
1. 指导本科生获第12届国家挑战杯(小挑)银奖1项(2020,11),独立指导老师
2. 指导本科生获第15届国家挑战杯(大挑)一等奖1项(2017.11),第一指导老师
3. 获第15届国家挑战杯优秀指导老师称号(2017.11)
4. 指导本科生参加第十届全国大学生创新创业年会交流入选作品奖1项(2017.11),独立指导老师
5. 指导本科生获第14届国家挑战杯(小挑)一带一路国际邀请赛铜奖1项(2024,10),第一指导老师
6. 指导本科生获第14届省挑战杯(大挑)特等奖1项(2017.06),独立指导老师
7. 指导本科生获第12届省挑战杯(小挑)金奖1项(2020,07),第一指导老师
8. 指导本科生获中国国际“互联网+”大学生创新创业大赛(2023)省分赛铜奖1项(2023,07),第一指导老师
9. 指导本科生获中国国际“互联网+”大学生创新创业大赛(2024)省分赛银奖1项(2024,08),第一指导老师
10. 指导本科生获第14届省挑战杯(小挑)银奖1项(2024,05),第一指导老师
Frontiers in Materials 副主编
1. 广东省国际科技合作基地-储能材料国际联合研究中心(2023A0505090009), 2024.01-2026.12,在研,主持;
2. 广州市重点研发计划项目(2023B03J1278),2023.04-2026.03,在研,主持;
3. 国家基金面上项目(21875076),2019.01-2022.12,结题,主持;
4. 广东省科技计划项目(国际合作项目)(2018A050506077),2018,12-2021,05,结题,主持;
5. 广东省科技计划项目(国际合作项目)(2016A050502054),2016.01-2017.12,结题,主持;
6. 广东省科技计划项目(广东省协同创新与平台环境建设专项项目)(2015A040404043),2015.01-2016.12,结题,主持;
7. 中国博士后基金项目,(2014M552190),2014.05-2015.12,结题,主持;
8. 广州市科技计划项目,(201609010096), 2016.07-2017.12,结题,主持;
9. 广东省科技特派员项目,(GDKTP2020021500),2020.10-2021.12,结题,主持;
代表性论文/论著
以通讯作者或第一作者在Angew. Chem. Int. Ed.,Adv. Energy. Mater., ACS Energy Lett., Chem. Eng. J., J. Mater. Chem. A, ACS Appl. Mater. Interfaces等期刊上发表SCI论文50余篇。
[1] W.X Kuang,# X.Z. Zhou,# Z.Q. Fan, X.M. Chen, Z. Yang, J. Chen, X.Y. Shi, L. Li,* R.H. Zeng*, J.-Z. Wang, S.L. Chou*,Sulfur-containing inorganic-rich interfacial chemistry empowers advanced sodium-ion full batteries,ACS Energy Lett. 2024,9, 4111-4118.
[2] J.H. Li,# Z.Q. Fan,# H.P. Ye, J.Y. Zheng, J.W. Qiu, H.X. He, P. Liu, M.X. He, H.D. Liu, N. D. Hoa, R.H. Zeng*, Novel sulfur-based electrolyte additive for constructing high-quality sulfur-containing electrode-electrolyte interphase fflms in sodium-ion batteries, Chem. Eng. J. 2024, 489:151188.
[3] A.N. Zhou,# J.Y. Zheng,# C.X. Lei, J.Y. Liang, X.T. Deng, Z.T. Wu, P. Chuangchanh, Q. Chen, R.H. Zeng*, A Two-dimensional Metal-organic framework as promising cathode for advanced lithium storage, Chem. Eur. J. 2024, e202303683.
[4] Z.Q. Fan#, X.Z. Zhou#, J.W. Qiu, Z. Yang, C.X. Lei, Z.Q. Hao, J.H. Li,* L. Li,* R.H. Zeng,* S.-L. Chou*,Sulfur-rich additive-induced interphases enable highly stable 4.6 V LiNi0.5Co0.2Mn0.3O2 | | graphite pouch cells, Angew. Chem. Int. Ed. 2023, e202308888.
[5] Y.W. Wu,# M.J. Lai,# J.F. Liang, J.Y. Liang, D.Y. Zhang, R.H. Zeng,* J.H. Li, Z.G. Xu, P. Chuangchanh, M. Du, X.-L. Wu*, Advanced 1D metal−organic coordination polymer for lithium-ion batteries: designing, synthesis, and working mechanism, ACS Appl. Mater. Interfaces, 2023, 15, 1452−1462.
[6] J.W. Qiu,# J. Guo,# J. H. Li,* Y.P. Wu, Z.Q. Fan, H.P. Ye, Z. Fang, Z.W. Zhang, R.H. Zeng*, Insight into the contribution of the electrolyte additive LiBF4 in high-voltage LiCoO2||SiO/C Pouch Cells, ACS Appl. Mater. Interfaces, 2023, 15, 56918−56929.
[7] S.-H. Zheng, X.-T. Wang, Z.-Y. Gu, H.-Y. Lü*, X.-Y. Zhang, J.-M. Cao, J.-Z. Guo, X.-T. Deng, Z.-T. Wu, R.-H. Zeng*, X.-L. Wu*, Direct and rapid regeneration of spent LiFePO4 cathodes via a high-temperature shock strategy, J. Power Sources 2023, 587, 233697.
[8] J. Guo,# J.H. Li,# Z.Q. Fan, J.W. Qiu, H.P. Ye, J.F. Liang, J.Y. Liang, R.H. Zeng,* Y.P. Cai*, Rationally designing cathode interphase chemistry via electrolyte additives for high-voltage batteries, ACS Appl. Energy Mater, 2023, 6, 2448-2461.
[9] Y.L. Li#, Z.Q. Fan#, Z.J. Peng#, Z.H. Xu, X.Y. Zhang, J.-E. Zhou, X.M. Lin*, Z.Y. Wu, E.Y. Zhao#, R.H. Zeng*, Metal–organic framework-derived LiFePO4/C composites for lithium storage: In situ construction, effective exploitation, and targeted restoration, EcoMat. 2023, e12415.
[10] X.Y. Yang,# H. Deng,# J.F. Liang, J.Y. Liang, R.H Zeng,* R.R. Zhao, Q. Chen, M.Z. Chen, Y.F. Luo,* S.L. Chou*, Facile Synthesis of a LiC15H7O4/Graphene Nanocomposite as a High-Property Organic Cathode for Lithium-Ion Batteries, ACS Appl. Mater. Interfaces, 2022, 14, 56808−56816.
[11] R.H. Zeng,*,# Y.W. Wu,# S.H. Qian, L. Li, H. Zhang, Q. Chen, Y.F. Luo,* S.-L. Chou*, Graphene-Supported Naphthalene-Based Polyimide Composite as a High-Performance Sodium Storage Cathode, ACS Appl. Mater. Interfaces, 2022, 14, 11448−11456.
[12] F.H. Chen, Y.W. Wu, H.H. Zhang, Z.T. Long, X.X. Lin, M.Z. Chen, Q. Chen, Y.F. Luo, S.-L. Chou, R.H. Zeng*, The Modulation of discharge plateau of benzoquinone for sodium-ion batteries, Int. J. Min. Met Mater., 2021, 28(10):1675-1683.
[13] Y.J. Ye, Z.X. Li, J.X. Pan, G.Z. Lin, Z.S. Zhu, R.T. Ye,Y.F. Luo, V. Ganesh, R.R. Zhao, D. Shu, R. H. Zeng*, Enhanced lithium storage properties achieved by TiO2 reinforced 2D CuO clusters, Sustain. Mater. and Techno., 2019, 21: e00097.
[14] Y.W. Wu, R. H. Zeng*, J.M. Nan, D. Shu, Y.C. Qiu,* S.-L. Chou*, Quinone Electrode Materials for Rechargeable Lithium/Sodium Ion Batteries, Adv. Energy. Mater., 2017,7,1700278.
[15] X.J. Chen,Y.W. Wu, Z.K. Huang, X.Y. Yang, W.J. Li, L. C. Yu, R. H. Zeng*, Y.F Luo*, S.-L. Chou*, C10H4O2S2/graphene composite as a cathode material for sodium-ion batteries. J. Mater. Chem. A, 2016, 4,18409–18415.
[16] Y.Q. Zhang, Y.W. Wu, Y.H. Chu, L. Li, Q.P. Yu, Y.F. Zhu, G. Liu, Q. Hou, R. H. Zeng*, L.Z. Zhao*, Self-assembled Co3O4 nanostructure with controllable morphology towards high performance anode for lithium ion batteries, Electrochim. Acta, 2016, 188: 909–916.
[17] Y.F. Zhu, Y.H. Chu, J.H. Liang, Y.S. Li, Z.L. Yuan, W.T. Li, Y.Q. Zhang, X.X. Pan, S. L. Chou, L.Z. Zhao*, R. H. Zeng*, Tucked flower-like SnS2/Co3O4 composite for high-performance anode material in lithium-ion batteries, Electrochim Acta, 2016,190: 843–851.
[18] W. T Li, K. N. Shang, Y. M. Liu, Y. F. Zhu, R. H. Zeng*, L. Z. Zhao, Y. W. Wu, L. Li, Y. H. Chu, J.H. Liang, G. Liu, A novel sandwich-like Co3O4/TiO2 composite with greatly enhanced electrochemical performance as anode for lithium ion batteries, Electrochim Acta, 2015, 174:985-991.
[19] W. T. Li, L. Z. Zhao, Y.Y. Tian, Y. X. Gong, X.T. Huang, Z.Y. Cui, R. H. Zeng*, Superfine TiO2/SnO2/Carbon Hybrid Nanocomposite with Greatly Enhanced Electrochemical Properties, Electrochim. Acta, 2014, 147:603-609.
[20] R. H. Zeng, L. D. Xing, Y. C. Qiu, Y. T. Wang, W. N. Huang, W. S. Li*, S. H. Yang*, Polycarbonyl(quinonyl) organic compounds as cathode materials for sustainable lithium ion batteries, Electrochim. Acta, 2014, 146:447-454.
授权发明专利:
[1]一种锂盐电解液添加剂和含有该添加剂的电解液及锂离子电池,授权号:ZL 202011021438 X, 授权公告日:2021.12.14。
[2] 一种PMDQ、NTDQ、PTDQ及其制备方法和应用,授权号:ZL 202310197202.9, 授权公告日:2024.10.11。
[3] 钠离子电池电解液、钠离子电池和提高钠离子电池性能方法,授权号:ZL 202310855659.4, 授权公告日:2024.07.13。
欢迎对电化学感兴趣的同学及博后和青年英才等加入本实验室!