雷霆

特聘研究員,博士生導師


材料科學與工程系 特聘研究員


聯系電話:
電子郵箱:[email protected]
個人主頁:http://www2.coe.pku.edu.cn/faculty/leiting/index.html



教育與工作經歷:

2018至今,特聘研究員,博導,北京大學工學院材料科學與工程系
2013-2018,博士后,斯坦福大學化工系(導師:鮑哲楠教授)
2008-2013,理學博士,北京大學化學與分子工程學院(導師:裴堅教授)
2004-2008,理學學士,北京大學化學與分子工程學院

 

研究領域:

有機高分子功能材料在醫學檢測、可穿戴、可植入設備中具有廣泛的應用前景,是化學、材料學、生命科學和微電子技術的重要研究方向。我們致力于發展新型有機高分子功能材料,結合電子學與生命科學的技術和手段,發展具有生物醫學應用有機高分子電子器件,并應用于醫學檢測治療、可穿戴設備或可植入式芯片中。

  • 有機高分子功能材料
  • 有機電子學
  • 柔性可穿戴器件
  • 生物醫學電子技術

Google Scholar: https://scholar.google.com/citations?user=GkVRR2YAAAAJ&hl=en

 

獎勵與榮譽:

2013年,北京市優秀畢業生
2013年,北京大學優秀畢業生
2013年,北京大學“學術十杰”
2012年,博士研究生國家獎學金
2011年,教育部“博士研究生學術新人獎”
2011年,北京大學博士研究生校長獎學金
2007年,北京大學本科生校長基金,優秀論文獎
2004年,中國化學奧林匹克(決賽)暨冬令營,一等獎

 

研就成果總結:

迄今為止發表科研論文超過50篇,總引用超過3000次。其中包括Nat. Energy (1), PNAS (1), Sci. Adv. (1), Acc. Chem. Res. (2), J. Am. Chem. Soc. (5), Adv. Mater. (3), Chem. Sci. (2), Chem. Mater. (2) 等。研究成果被國內外多家媒體報道,被多篇綜述評論為該領域的重要發現。目前申請中國和國際專利7項,已獲授權4項。部分專利成果已實現規模化生產,并與國內外多家公司開展了合作和產業化研究。

 

代表性論文:

1. D. Feng#, T. Lei#, M. R. Lukatskaya#, J. Park, Z. Huang, M. Lee, L. Shaw, S. Chen, A. A. Yakovenko, J. B. Tok, X. Zou, Y. Cui, Z. Bao, “ Robust and Conductive Two-Dimensional Metal?Organic Frameworks with Exceptionally High Volumetric and Areal Capacitance“ Nature Energy, 2018, 3, 30 (# equal contribution)

2. N. Liu#, A. Chortos#, T. Lei#, L. Jin, T. R. Kim, W.-G. Bae, C. Zhu, S. Wang, R. Pfattner, X. Chen, R. Sinclair, Z. Bao, “Ultra-transparent and Stretchable Graphene Electrodes” Sci. Adv., 2017, 3, e1700159 (# equal contribution)

3. T. Lei, M. Guan, J. Liu, H.-C. Lin, R. Pfattner, L. Shaw, A. F. McGuire, T.-C. Huang, L.-L. Shao, K.-T. Cheng, J. B. Tok, and Z. Bao, “Biocompatible and Totally-Disintegrable Semiconducting Polymer for Ultrathin and Ultra-Lightweight Transient Electronics” Proc. Natl. Acad. Sci. (PNAS), 2017, 140, 5107. Featured in over 30 media worldwide, e.g. Nature Research Highlights, 新華網, CNC News, Stanford News, KGO radio, Seeker.com

4. T. Lei, I. Pochorovski and Z. Bao, “Polymer-Based Low-Cost and Clean Separation of Semiconducting Carbon Nanotubes for Flexible and Stretchable Electronics”, Acc. Chem. Res. 2017, 50, 1096.

5. T. Lei, X. Chen, G. Pitner, H. S. P. Wong, Z. Bao, “Removable and Recyclable Conjugated Polymers for Highly Selective and High-Yield Dispersion and Release of Low-Cost Carbon Nanotubes” J. Am. Chem. Soc. 2016, 138, 802.

6. Y.-Q. Zheng#, T. Lei#, J.-H. Dou, X. Xia, J.-Y. Wang, C.-J. Liu, J. Pei, “Strong Electron-Deficient Polymers Lead to High Electron Mobility in Air and Their Morphology Dependent Transport Behaviors” Adv. Mater. 2016, 28, 7213. (# equal contribution)

7. T. Lei, J.-Y. Wang, J. Pei, “Design, Synthesis, and Structure-Property Relationship of Isoindigo-Based Conjugated Polymers”, Acc. Chem. Res. 2014, 47, 117. (Highlighted by ACS Select)

8. T. Lei, X. Xia, J.-Y. Wang, C. Liu, J. Pei, “"Conformation Locked" Strong Electron Deficient Poly(p-Phenylene Vinylene) Derivatives for Ambient-Stable n-Type Field-Effect Transistors: Synthesis, Properties, and Effects of Fluorine Substitution Position”, J. Am. Chem. Soc. 2014, 136, 2135.

9. T. Lei, J.-H. Dou, X.-Y. Cao, J.-Y. Wang, J. Pei, “Electron-Deficient Poly(p-Phenylene Vinylene) Provides Electron Mobility over 1 cm2 V–1 s–1 under Ambient Conditions”, J. Am. Chem. Soc. 2013, 135, 12168. Highlight in JACS Cover, JACS Highlights

10. T. Lei, J.-H. Dou, X.-Y. Cao, J.-Y. Wang, J. Pei, “A BDOPV-based Donor–Acceptor Polymer for High-Performance n-Type and Oxygen-Doped Ambipolar Field-Effect Transistors”, Adv. Mater. 2013, 25, 6589.

11. T. Lei, J.-H. Dou, Z.-J. Ma, C.-H. Yao, C.-J. Liu, J. Pei, “Ambipolar Polymer Field-Effect Transistors Based on Fluorinated Isoindigo: High Performance and Improved Ambient Stability”, J. Am. Chem. Soc. 2012, 134, 20025.

12. T. Lei, J.-H. Dou, J. Pei, “Influence of Alkyl Chain Branched Positions on the Hole Mobilities of Polymer Thin-Film Transistors”, Adv. Mater. 2012, 24, 6451.

13. T. Lei, Y. Cao, Y. Fan, C.-J. Liu, S.-C. Yuan, J. Pei, “High-Performance Air-Stable Organic Field-Effect Transistors: Isoindigo-Based Conjugated Polymers”, J. Am. Chem. Soc. 2011, 133, 6099.

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