Fan Lei
Brief Education and Work Background
Shanghai University, Doctor of Civil Engineering, Sep 2017-Aug 2021
Zhejiang University of Science & Technology, Civil Engineering (Master Tutor), Nov 2021-Present
Email: fanleigl@foxmail.com
Main Research Interests
1. New mechanical effects of nano-materials and structures at micro-nano scale.
2. Newly cement-based materials.
Main Research Projects
1. The Natural Science Foundation of Zhejiang Province (NO. LQ23E080003), Jan 2023-Dec 2024.
2. The Special Fund Project of Zhejiang University of Science and Technology’s Basic Scientific Research Business Expenses in 2023 (NO. 2023QN016), Jan 2023-Dec 2024.
3. Doctoral program of Zhejiang University of Science and Technology (NO. F701104L08), Nov 2021-Nov 2023.
4. National and Area Studies in German Speaking Countries (No. 2022DEGB004), Nov 2021-Nov 2023.
Main Published Papers
Published 38 papers (25 SCI) as the first author and corresponding author.
(https://orcid.org/0000-0002-8018-4174)
[1] Lei Fan. Mechanical mechanism of ion and water molecular transport through angstrom-scale graphene derivatives channels: From atomic model to solid-liquid interaction. International Journal of Molecular Sciences, 2023, 23: 1433. (JCR Q1, TOP, IF=6.208)
[2] Lei Fan, Xinyu Cai, Hongwei Wang, Jian Ye, Yihong Hong, Jiahao Ying. Toughening two-dimensional hybrid materials by integrating carbon nanotubes. Surfaces and Interfaces, 2023, 36: 102559. (JCR Q1, IF=6.137)
[3] Lei Fan, Zuguang Bian, Zhuye Huang, Fangyuan Song, Yongqiang Xia, Jin Xu. Role of grain boundary and nanoholes in geometrical deformation and bonding energies of graphene/hexagonal boron nitride. Diamond and Related Materials, 2022, 126: 109119. (JCR Q2, IF=3.806)
[4] Lei Fan, Zuguang Bian, Zhuye Huang, Fangyuan Song, Yongqiang Xia, Jin Xu. New insight into bonding energy and stress distribution of graphene oxide/hexagonal boron nitride: Functional group and grain boundary effect. Diamond and Related Materials, 2022, 127: 109185. (JCR Q2, IF=3.806)
[5] Lei Fan and WenJuan Yao. Temperature dependence of interfacial bonding and configuration transition in graphene/hexagonal boron nitride containing grain boundaries and functional groups. International Journal of Molecular Sciences, 2022, 23: 1433. (JCR Q1, IF=6.208)
[6] Lei Fan, Kun Liu, GuangYan Liu, YiHong Hong. Defects in Gr/h-BN nanoribbons heterostructure: atomically precise cutting and defect amplification effect via hydrogenation pseudo-crack. Diamond and Related Materials, 2022, 123: 108877. (JCR Q2, IF=3.806)
Books
Lei Fan. New Mechanical Effects of Nano-Materials and Structures at Micro-Nano Scale. SINGAPORE, Viser Technology Pte. Ltd, 2023.