百家乐怎么玩-澳门百家乐官网娱乐城网址_网上百家乐是不是真的_全讯网888 (中国)·官方网站

Prof. Zhiyuan ZENG

BS Central South Univerity
MS Zhejiang University
PhD Nanyang Technological University


Associate Professor

 


Office: BOC-R7128
Phone: +(852)-3442-2318
Fax: +(852)-3442-0892
Email: zhiyzeng@cityu.edu.hk
Web: https://www.zeng-lab.com/

BS Central South Univerity
MS Zhejiang University
PhD Nanyang Technological University


Associate Professor

 


Office: BOC-R7128
Phone: +(852)-3442-2318
Fax: +(852)-3442-0892
Email: zhiyzeng@cityu.edu.hk
Web: https://www.zeng-lab.com/

Prof. Zhiyuan Zeng received his BSc, MPhil and PhD degrees all in Material Science & Engineering from Central South University, Zhejiang University and Nanyang Technological University in 2006, 2008 and 2013, respectively. He continued his postdoc training at Lawrence Berkeley National Laboratory (2013-2017). Then he jumped into industry in Silicon Valley working for Applied Materials Inc. As Process Engineer/Senior Process Engineer (2017-2019). Prof. Zeng joined CityU-MSE in 2019. His research interest focuses on using In-situ/Ex-situ Multimodal Characterizations to solve fundamental and technologically-important problems, especially those related to environmental and energy applications. He has published 169 SCI papers (121 IF > 10) with total citation 25340 times and H-index 69 (google scholar), which include Nature Materials, Nature Reviews Chemistry, Nature Synthesis, Nature Protocols, Nature Water, Nature Communications, Advanced Materials, Angewandte Chemie International Edition, etc. He was awarded the 2023/2024 Young Collaborative Research Grant (Y-CRG, 4,832,040 HKD) by the University Grants Committee (UGC) of Hong Kong, and he was also awarded the IAAM Fellow by the International Association of Advanced Materials (IAAM) in 2023. He has been listed as the Highly Cited Researcher (Top 1%, Clarivate Analytics) in 2024, 2023, 2022, 2020 and 2018. He has also been listed as the World's Top 2% Scientists in Nanosci. & Nanotechnol. for single year in 2024, 2023, 20222021 and 2020 (by Stanford University).

Honors/Awards

2024 RGC Young-Collaborative Research Grant (Y-CRG)
2024 Highly Cited Researcher, by Clarivate Analytics

2024 World's Top 2% Scientists in Nanosci. & Nanotechnol., by Stanford University
2023 Fellow, by the International Association of Advanced Materials (IAAM)

2023 Highly Cited Researcher, by Clarivate Analytics
2023 World's Top 2% Scientists in Nanosci. & Nanotechnol., by Stanford University
2022 Highly Cited Researcher, by Clarivate Analytics
2022 World's Top 2% Scientists in Nanosci. & Nanotechnol., by Stanford University
2022 Rising Star Series, by Advanced Materials (IF: 32.09)
2022 Rising Star Series, by Small (IF: 15.15)
2021 Emerging Investigators for Chemical Communications (IF: 6.222)
2021 World's Top 2% Scientists in Nanosci. & Nanotechnol., by Stanford University
2020 Highly Cited Researcher, by Clarivate Analytics
2020 World's Top 2% Scientists in Nanosci. & Nanotechnol., by Stanford University
2020 Emerging Investigators for Journal of Materials Chemistry A (IF: 14.511)
2019 Early Career Scheme award by Research Grants Council of Hong Kong
2018 Highly Cited Researcher, by Clarivate Analytics
2018 Working Smarter in Analytical Techniques, by EAG Laboratories (Silicon Valley)
2014 Secretary, San Francisco Section of The Electrochemical Society, by ECS

Selected Publications

[1] Phase-switchable preparation of solution-processable WS2 mono- or bi-layers, L. Mei?, Z. Gao?, R. Yang?, Z. Zhang?, M. Sun, X. Liang, Y. Zhang, T. Ying, H. Hu, D. Li, Q. Zhang, M. D. Gu, L. Gu, J. Zhou, B. Huang, D. Voiry, X. C. Zeng, Y. Chai, J. Li*, X. Yu*, Z. Y. Zeng*Nature Synthesis2025, 4, 303-313. (Cover) 
[2] Intercalation in 2D materials and in-situ studies, R. Yang?, L. Mei?, Z. Lin?, Y. Fan, J. Lim, J. Guo, Y. Liu, H. S. Shin, D. Voiry, Q. Lu*, J. Li*, Z. Y. Zeng*Nature Reviews Chemistry2024, 8, 410-432. (Cover) (ESI Highly Cited Papers: 43)
[3] Metallic 1T/1T′ Phase TMD Nanosheets with Enhanced Chemisorption Sites for Ultrahigh-Efficiency Lead Removal, L. Mei?, M. Sun?, R. Yang?, Y. Zhang, Y. Zhang, Z. Zhang, L. Zheng, Y. Chen, Q. Zhang, J. Zhou, Y. Zhu, K. M.Y. Leung, W. Zhang, J. Fan, B. Huang*, X. C. Zeng, H. S. Shin, C. Y. Tang, L. Gu*, D. Voiry, Z. Y. Zeng*Nature Communications, 2024, 15, 7770.
[4] Synthesis of atomically thin sheets by the intercalation-based exfoliation of layered materials, R. Yang, Y. Fan, L. Mei, H. S. Shin, D. Voiry, Q. Lu, J. Li*, Z. Y. Zeng*Nature Synthesis2023, 2, 101-118.
[5] Fabrication of Liquid Cell for In-Situ Transmission Electron Microscopy of Electrochemical Processes, R. Yang, L. Mei, Y. Fan, Q. Zhang, H. G. Liao, J. Yang, J. Li*, Z. Y. Zeng*Nature Protocols2023, 18, 555-578.
[6] High-yield production of mono- or few-layer transition metal dichalcogenides nanosheets by electrochemical lithium ion intercalation-based exfoliation method?, R. Yang?, L. Mei?, Q. Zhang?, Y. Fan, H. S. Shin*, D. Voiry*, Z.Y. Zeng*Nature Protocols2022, 17, 358-377. (ESI Highly Cited Papers: 110)
[7] Photocatalysis with atomically thin sheets, R. Yang, Y. Fan, J. Hu, Z. Chen, H. S. Shin, D. Voiry, Q. Wang, Q. Lu*, J. C. Yu*, Z. Y. Zeng*Chemical Society Reviews, 2023, 52, 7687 - 7706.
[8] Framework structure engineering of polymeric carbon nitrides and its recent applications, B. Tian, D. Ho*, J. Qin, J. Hu, Z. Chen, D. Voiry, Q. Wang*, Z. Y. Zeng*Progress in Materials Science2023, 133, 101056. ??
[9] Liquid-phase TEM study of electrochemical reactions at multiple interfaces, H. Hu, R. Yang, Z. Y. Zeng*Matter2025, 8, 101939.
[10] Transition Metal Dichalcogenide-Based Functional Membrane: Synthesis, Modification and Water Purification Applications, H. Peng, R. Wang*, L. Mei, Q. Zhang, T. Ying, Z. Qian*, A. B. Farimani, D. Voiry*, Z. Y. Zeng*Matter2023, 6, 59-96.
[11] In-Situ TEM Visualization of LiF Nanosheets Formation on the Cathode-Electrolyte Interphase (CEI) in Liquid-Electrolyte Lithium-Ion Batteries, Q. Zhang?, J. Ma?, L. Mei, J. Liu, Z. Li*, J. Li*, Z. Y. Zeng*Matter2022, 5, 1235-1250. (ESI Highly Cited Papers: 63) 
?[12] Achieving Exceptional Volumetric Desalination Capacity Using Compact MoS2 Nanolaminates, T. Ying?, Y. Xiong?, H. Peng?, R. Yang, L. Mei, Z. Zhang, W. Zheng, R. Yan, Y. Zhang, H. Hu, C. Ma, Y. Chen, X. Xu, J. Yang, D. Voiry, C. Y. Tang, J. Fan, Z. Y. Zeng*Advanced Materials2024, 36, 2403385.
[13] Simultaneous electrochemical exfoliation and covalent functionalization of MoS2 membrane for ion sieving, L. Mei, Z. Cao, T. Ying, R. Yang, H. Peng, G. Wang, L. Zheng, Y. Chen, C. Y. Tang, D. Voiry, H. Wang*, A. B. Farimani*, Z. Y. Zeng*Advanced Materials2022, 34, 2201416. (Invited paper for "Rising Stars Series")
[14] MnO2-based materials for environmental applications, R. Yang, Y. Fan, R. Ye, Y. Tang, X. Cao*, Z. Yin*, Z. Y. Zeng*Advanced Materials2021, 33, 2004862. (ESI Highly Cited Papers: 362) (Hot Paper)  
[15] 2D Transition Metal Dichalcogenides for Photocatalysis, R. Yang, Y. Fan, Y. Zhang, L. Mei, R. Zhu,* J. Qin, J. Hu, Z. Chen, Y. H. Ng, D. Voiry, S. Li, Q. Lu, Q. Wang,* J. C. Yu,* Z. Y. Zeng*Angewandte Chemie International Edition2023, 62, e202218016. (ESI Highly Cited Papers: 114

全讯网赢足一世| 皇冠投注网址| 职业赌百家乐官网技巧| 德州扑克 盲注| 中华娱乐城| 百家乐能战胜吗| 皇冠网热门小说| 博彩百家乐官网心得| 百家乐画面方法| 百家乐官网网上真钱娱乐场开户注册| 水浒传老虎机破解| 百家乐官网群到shozo网| 龙海市| 机械手百家乐的玩法技巧和规则 | 百家乐机械图片| 大发888任务怎么做| 澳门百家乐官网网上娱乐场开户注册 | 霍林郭勒市| 百家乐强弱走势图| 百家乐官网视频游戏掉线| 威尼斯人娱乐城首选大丰收 | 在线玩百家乐的玩法技巧和规则| 百家乐官网赌场牌路分析| 大发888真钱娱乐城下载| 百家乐tt娱乐城| 德州扑克起手牌概率| 百家乐官网游戏合法吗| 威尼斯人娱乐城备用地址| 做生意选店铺位置| 太阳城百家乐官网主页| 大西洋娱乐城| 网上百家乐官网真实吗| 明珠国际娱乐| 威尼斯人娱乐棋牌是真的吗| 免费百家乐官网计划软件| 百家乐官网开户最快的平台是哪家 | 网上赌百家乐官网正规吗| 太阳城官方网站| 盈得利百家乐娱乐城| 百家乐视频游戏注册| 无锡市|