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Jun Xia
  Date:2022-11-27 View:
Name Jun XiaDate of Birth 1992.11

TitleQualified
Professor/MS
Supervisor
Degree Ph.D.
Position  Discipline Mechanics
Education and
Professional
Experience

Education
09/2015-07/2020, Ph.D. in Solid Mechanics, Advisor: Prof. HengAn Wu, Department of Modern Mechanics, University of Science and Technology of China;
09/2011-06/2015, Bachelor in Engineering Mechanics, Nanjing University of Science and Technology.
Professional Experience
08/2022-present, Qualified Professor, Faulty of Civil Engineering and Mechanics, Jiangsu University;
07/2020-07/2022, Postdoctoral Fellow, under the supervison of Prof. HengAn Wu, Department of Modern Mechanics, University of Science and Technology of China.

Scientific
Research Field

1、Interfacial nanomechanics: Chemomechanical mechanisms within noncovalent interfaces (crosslink/adsorption, multiscale structure-property relationship, material design).
2、Chemomechanical behaviors of low-dimensional materials.
Atomistic nature of nnomaterials with extraordinary performances in mechanics, catalysis, electrochemistry, and et al.

Projects

Multiscale structure-property relationships and interfacial chemomechanical mechanisms of noncovalent materials (12102422), Natural Science Foundation of China, 01/2022-12/2024.

Main Papers
and Patents

Representative publications:
<#> Contributed equally, <*> Corresponding author
[1] H.F. Liu#, J. Xia#, N. Zhang, H. Cheng, W.T. Bi, X.L. Zu, W.S. Chu, H.A. Wu, C.Z. Wu*, and Y. Xie. Solid–liquid phase transition induced electrocatalytic switching from hydrogen evolution to highly selective CO2 reduction. Nature Catalysis, 2021, 4(3): 202–211. (IF = 40.706)
[2] H. Cheng#, J. Xia#, M.H. Wang#, C. Wang, R.J. Gui, X.M. Cao, T.P. Zhou, X.S. Zheng, W.S. Chu, H.A. Wu, Y. Xie, and C.Z. Wu*. Surface anion promotes Pt electrocatalysts with high CO tolerance in fuel-cell performance. Journal of the American Chemical Society, 2022, 144(48): 22018-22025. (IF = 16.383)
[3] Y.Z. Hou, J. Xia*, Z.Z. He, Y.B. Zhu, and H.A. Wu*. Molecular levers enable anomalously enhanced strength and toughness of cellulose nanocrystal at cryogenic temperature. Nano Research, 2022. (IF = 10.269, Cover Paper)
[4] J. Xia, Y.B. Zhu, X. Jin, and H.A. Wu*. Unravelling the interactions between organic molecules and reduced graphene oxide in an aqueous environment. Carbon, 2020, 167: 345–350. (IF = 11.307)
[5] J. Xia, Y.B. Zhu*, Z.Z. He, F.C. Wang, and H.A. Wu*. Superstrong noncovalent interface between melamine and graphene oxide. ACS Applied Materials & Interfaces, 2019, 11(18): 17068–17078. (IF = 10.383)

Email

xiajun@ujs.edu.cn

 
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