删除或更新信息,请邮件至freekaoyan#163.com(#换成@)

中山大学材料科学与工程学院导师教师师资介绍简介-曾志平

本站小编 Free考研考试/2021-05-20



个人基本简介:
职称:副教授
学位:博士
毕业学校:南洋理工大学(Nanyang Technological University)
电子邮件:zzhip8@mail.sysu.edu.cn
通讯地址:广东省广州市广州大学城外环东路132号中山大学工学院C栋

主要经历:
2020-至今 ?中山大学材料科学与工程学院,“****”副教授
2017-2020 ?新加坡南洋理工大学 化学与生物药学学院 研究员
2017.08-2017.10 新加坡南洋理工大学 化学与生物医药学院 助理研究员
2013-2017 ?????新加坡南洋理工大学 跨学科研究生学院 博士
2010-2013 ?????中山大学 ??物理科学与技术工程学院 硕士
2006-2010 ?????中南大学?? 材料科学与工程学院???? 学士

学科方向:
新型光电纳米材料设计(MXene量子点、石墨烯量子点、单原子、二维材料等)
绿色能源器件(金属-空气电池、燃料电池等)
?
科研的乐趣在于探索新方法、研发新材料、开发新器件,欢迎材料、化学、物理和电子等背景方向的青年学子加盟,共赴科研创新之旅。
?

荣誉获奖:
中山大学****(2020)
中国留学基金委--国家优秀自费留学生奖(2016)

主要兼职:
担任ACS Energy Letters, Applied Catalysis B: Environmental, Applied Nanoscience等多个国际期刊独立审稿人

代表论著:
1.Z. Zeng, Y. Yan, J. Chen, P. Zan, Q. Tian, P. Chen, Boosting the photocatalytic ability of Cu2O nanowires for CO2 conversion by MXene quantum dots, Adv. Funct. Mater. 2019, 29, **. (ESI Highly cited paper)
2.Z.Zeng, G. Fu, H. Yang, Y. Yan, J. Chen, Z. Yu, J. Gao, L. Gan, B. Liu, Y. Zeng, P. Chen, Bifunctional N-CoSe2/3D-MXene as Highly Efficient and Durable Cathode for Rechargeable Zn-Air Battery, ACS Mater. Lett. 2019, 432.
3.Z. Lin#, Z. Zeng#, X. Gui, Z. Tang, M. Zou, A. Cao, Carbon nanotube sponges, aerogels, and hierarchical composites: synthesis, properties and energy applications. Adv. Energy Mater. 2016, 6, **. (# equal contribution)
4.Z. Zeng, F. X. Xiao, H. Phan, S. Chen, Z. Yu, R. Wang, T. Y. T. Tan, Unraveling the cooperative synergy of zero-dimensional graphene quantum dots and metal nanocrystals enabled by layer-by-layer assembly, J. Mater. Chem. A 2018, 6, 1700. (ESI Highly cited paper)
5.Z. Zeng, T. Li, Y. -B. Li, X. C. Dai, M. H. Huang, Y. He, G. Xiao, F. X. Xiao, Plasmon-induced photoelectrochemical water oxidation enabled by in situ layer-by-layer construction of cascade charge transfer channel in multilayered photoanode, J. Mater. Chem. A 2018, 6, 24686.
6.Z. Zeng, Y. -B. Li, S. Chen, P. Chen, F. X. Xiao, Insight into the charge transport correlation in Aux clusters and graphene quantum dots deposited on TiO2 nanotubes for photoelectrochemical oxygen evolution, J. Mater. Chem. A 2018, 6, 11154.
7.Z. Zeng, S. F. Chen, T. Y. T. Tan, F. X. Xiao, Graphene quantum dots (GQDs) and its derivatives for multifarious photocatalysis and photoelectrocatalysis, Catalysis Today 2018, 315, 171.
8.Z. Zeng, F. X. Xiao, X. Gui, R. Wang, B. Liu, T. Y. T. Tan, Layer-by-layer assembly of nitrogen-doped graphene quantum dots monolayer decorated one-dimensional semiconductor nanoarchitectures for solar-driven water splitting, J. Mater. Chem. A 2016, 4, 16383.
9.Z. Zeng, D. Yu, Z. He, J. Liu, F. X. Xiao, Y. Zhang, R. Wang, B. Dibakar, T. Y. T. Tan, Graphene oxide quantum dots covalently functionalized PVDF membrane with significantly-enhanced bactericidal and antibiofouling performances, Sci. Rep. 2016, 6, 20142.
10.Z. Zeng,X. Gui, Q. Gan, Z. Lin, Y. Zhu, W. Zhang, R. Xiang, A. Cao, Z. Tang, Integrated random-aligned carbon nanotube layers: Deformationmechanism under compression,Nanoscale2014, 6, 1748.
11.Z. Zeng,X. Gui, Z. Lin, L. Zhang, Y. Jia, A. Cao, Y. Zhu, R. Xiang, T. Wu, Z. Tang, Carbon nanotube sponge-array tandem composites with extended energy absorption range.Adv. Mater. 2013, 25, 1185.
12.X. Gui#, Z. Zeng#, A. Cao, Z. Lin, H. Zeng, R. Xiang, T. Wu, Y. Zhu, Z. Tang, Elastic shape recovery of carbon nanotube sponges in liquid oil,J. Mater. Chem.2012, 22, 18300. (# equal contribution)
13.X. Zhao, Y. Liu, W. Cai, Q. Wang, Z. Zeng, F. Hu, T. Hu, B. Liu, H. Yang, Phosphorus Modified Carbon Fiber Cloth as a Robust and Efficient Anode for Alkaline Water Electrolysis, Mater. Today Adv., 2021, doi.org/10.1016/j.mtener.2021.100683.
14.Y. Yan, Z. Zeng, M. Huang, P. Chen, Van der Waals heterojunctions for Catalysis, Mater. Today Adv., 2020, 6, 100059.
15.Z. Zhang, X. Zhao, S. Xi, L. Zhang, Z. Chen, Z. Zeng, M. Huang, H. Yang, B. Liu, S. Pennycook, P. Chen, Atomically Dispersed Cobalt Trifunctional Electrocatalysts with Tailored Coordination Environment for Flexible Rechargeable Zn-Air Battery and Self‐Driven Water Splitting, Adv. Energy Mater. 2020, 10, **.
16.Y. Yan, D. Zhai, Y. Liu, J. Gong, Z. Zeng, S. Li, W. Huang, P. Chen, van der Waals Heterojunction between a Bottom-Up Grown Doped Graphene Quantum Dot and Graphene for Photoelectrochemical Water Splitting, ACS Nano 2020, 14, 1185.
17.Y. Yan, J. Gong, J. Chen, Z. Zeng, W. Huang, K. Pu, J. Liu, P. Chen, Recent advances on graphene quantum dots: From chemistry and physics to applications,Adv. Mater. 2019, 31, **. (ESI Highly cited paper)
18.J. Gao, C. Xu, S. F. Hung, W. Liu, W. Cai, Z. Zeng, C. Jia, H. M. Chen, H. Xiao, J. Li, Y. Huang, B. Liu, Breaking Long-Range Order in Iridium Oxide by Alkali Ion for Efficient Water Oxidation, J. Am. Chem. Soc. 2019, 141, 3014.(ESI Highly cited paper
19.Z. Yu, W. Hu, H. Zhao, X. Miao, Y. Guan, W. Cai, Z. Zeng, Q. Fan, T. T. Y. Tan, Generating New Cross Relaxation Pathways by Coating Prussian Blue on NaNdF? for Enhanced Photothermal Agents, Angew. Chem. Inter. Ed. 2019, 131, 8624.
20.Y. Zhang, Z. Yu, J. Li, Z. Zeng, X. Yang, T. T. Y. Tan, Ultrasmall-super bright neodymium-upconversion nanoparticles via energy migration manipulation and lattice modification: 808 nm-activated drug release, ACS Nano 2017, 11, 2846.
21.L. Li, H. Yang, J. Miao, L. Zhang, H. Y. Wang, Z. Zeng, W. Huang, B. Liu, Unraveling oxygen evolution reaction on carbon-based electrocatalysts: effect of oxygen doping on adsorption of oxygenated intermediates, ACS Energy Lett. 2017, 2, 294.
22.J. Chen, L. Zhang, Z. Lam, H. Tao, Z. Zeng, H. Yang, J. Luo, L. Ma, B. Li, J. Zheng, S. Jia, Z. Wang, Z. Zhu, B. Liu, Tunneling interlayer for efficient transport of charges in metal oxide electrodes, J. Am. Chem. Soc. 2016, 138, 3183.
23.L. Jin, Z. Zeng, S. Kuddannaya, D. Wu, Y. Zhang, Z. Wang, Biocompatible, free-standing film composed of bacterial cellulose nanofibers-graphene composite, ACSApplied Mater. & Inter. 2016, 8, 1011.
24.F. X. Xiao, Z. Zeng, B. Liu, Bridging the gap: Electron relay and plasmonic sensitization of metal nanocrystals for metal clusters, J. Am. Chem. Soc. 2015, 137, 10735.
25.Z. Lin, X. Gui, Z. Zeng, B. Liang, W. Chen, M. Liu, Y. Zhu, A. Cao, Z. Tang, Biomimetic carbon nanotube films with gradient structure and locally tunable mechanical property, Adv. Funct. Mater. 2015, 25, 7173.
26.F. X. Xiao, Z. Zeng, S. H. Hsu, S. F. Hung, H. Chen, B. Liu, Light-induced in situ transformation of metal clusters to metal nanocrystals for photocatalysis, ACSApplied Mater. & Inter. 2015, 7 (51), 28105.
27.L. Jin, Z. Zeng, S. Kuddannaya, D. Yue, J. Bao, Z. Wang, Y. Zhang, Synergistic effects of a novel free-standing reduced graphene oxide film and surface coating fibronectin on morphology, adhesion and proliferation of mesenchymal stem cells, J. Mater. Chem. B 2015, 3, 4338.
28.X. Gui, Z. Zeng, Y. Zhu, H. Li, Z. Lin, Q. Gan, R. Xiang, A. Cao, Z. Tang, Three-dimensional carbon nanotube sponge-array architectures with high energy dissipation.Adv. Mater. 2014,26, 1248. (封面文章)
29.X. Gui, Z. Zeng, Z. Lin, Q. Gan, R. Xiang, Y. Zhu, A. Cao, Z. Tang, Magnetic and highly recyclable macroporous carbon nanotubes for spilled oil sorption and separation, ACSApplied Mater. & Inter. 2013, 5, 5845. (ESI Highly cited paper)
30.X. Gui, Z. Lin, Z. Zeng, K. Wang, D. Wu, Z. Tang, Controllable synthesis of spongy carbon nanotube blocks with tunable macro- and microstructures, Nanotech. 2013, 24, 085705.
31.J. Chen, F. Meng,X. Gui, H.Sun, Z. Zeng, Z. Li, Y. Zhou, Z. Tang, The application of a three dimensional CNT-sponge as the counter electrode for dye-sensitized solar cells,Carbon2012, 50, 5624.



相关话题/中山大学 材料科学与工程学院