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美国康奈尔大学材料系Dr. Yu Zhong 实验室招聘有机功能材料方向博士后

美国康奈尔大学材料系Dr. Yu Zhong 实验室招聘有机功能材料方向博士后 X-MOL资讯
2022-10-17
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导读:美国康奈尔大学材料系Dr. Yu Zhong 实验室招聘有机功能材料方向博士后

学科领域  化学/材料


职位介绍

The Zhong lab in the Department of Materials Science and Engineering at Cornell University is seeking postdoctoral researchers to work on the synthesis of organic porous materials and/or ionic-electronic materials. We have openings in the following research directions:

1.Bottom-up synthesis of ultrathin nanoporous membranes for separation and sustainability.

2.Synthesis and transport study of hybrid organic-inorganic 2D materials.

3.Conjugated 2D polymers for bio-inspired and bio-electronic devices.


Candidates with experience in organic materials synthesis, polymers, and framework chemistry are highly encouraged to apply. For more information, please visit the Zhong group website: https://zhong.mse.cornell.edu


申请材料

Please send a copy of cover letter, CV, and contact information for at least two references to  yz2833@cornell.edu


导师介绍

Dr. Yu Zhong is an assistant professor of Materials Science and Engineering at Cornell University. He earned his B.S. in chemistry (2011) from the University of Science and Technology of China (USTC). In 2017, he received a Ph.D. degree in Chemistry from Columbia University under the supervision of Prof. Colin Nuckolls. His graduate research was centered on designing contorted molecules for electronic and energy applications ranging from organic solar cells, photodetectors to gas sensors. Afterward, he conducted his postdoctoral research in Prof. Jiwoong Park’s group at the University of Chicago, where he worked on the design and synthesis of 2D polymers for ultrathin electronic circuits and energy conversion. His research interest is developing novel soft materials and nanomaterials (organic electronic materials, porous polymers, hybrid 2D materials, etc.) for electronics, energy, healthcare, and sustainability applications.


代表性成果:
• Poddar, P. K.Zhong, Y.; et al., “Resist-free lithography for monolayer transition metal dichalcogenides”, Nano Letters, 2021, 22, 726-732.
Zhong, Y.; Cheng, B.; et al., “Wafer-Scale Synthesis of Monolayer Two-Dimensional Porphyrin Polymers for Hybrid Superlattices.” Science 2019, 366, 1379-1384. 
Zhong, Y.; Sisto, T. J.; et al., “Helical Nanoribbons for Ultra-Narrowband Photodetectors.” J. Am. Chem. Soc. 2017, 139, 5644-5647.
• Sisto, T. J.; Zhong, Y.; et al., “Long, Atomically Precise Donor-Acceptor Cove-Edge Nanoribbons as Electron Acceptors.” J. Am. Chem. Soc. 2017, 139, 5648-5651.
• Zhang, B.; et al.; Zhong, Y.*, “Rigid, Conjugated Macrocycles for High Performance Organic Photodetectors.” J. Am. Chem. Soc. 2016, 138, 16426–16431.
• Ball, M.; Zhong, Y.; et al., “Macrocyclization in the Design of Organic n-Type Electronic Materials.” J. Am. Chem. Soc. 2016, 138, 12861–12867.
Zhong, Y.; et al., “Molecular Helices as Electron Acceptors in High-Performance Bulk Heterojunction Solar Cells.” Nat. Commun. 2015, 6, 8242. 
Zhong, Y.; et al., “Efficient Organic Solar Cells with Helical Perylene Diimide Electron Acceptors.” J. Am. Chem. Soc. 2014, 136, 15215–15221.
Zhong, Y.; et al., “Helical Ribbons for Molecular Electronics.” J. Am. Chem. Soc. 2014, 136, 8122–8130.



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