Faculty

Zhong Zhang

Title: Professor
E-mail: zhong.zhang(AT)nanoctr.cn
Affiliation: National Center for Nanoscience and Technology (NCNST)
No.11 Beiyitiao Zhongguancun,
100190 Beijing,
P. R. China
Group Webpage:
Education and Professional Experience:

06/2005 - present Professor & Head of Division, Nanomanufacturing and Applications, National Center for Nanoscience and Technology, China.
11/2001 - 12/2005 Guest Professor & Group Leader (Alexander von Humboldt Sofja Kovalevskaja Awardee), Institute for Composite Materials, University of Kaiserslautern, Germany.
08/2000 - 11/2001 Alexander von Humboldt Research Fellow, Institute for Composite Materials, University of Kaiserslautern, Germany.
08/1998-12/1998 Exchange Student Engineering Division, Rutherford Appleton Laboratory, UK.
06/1997-07/1998 Exchange Student Institute of Material Research II, Karlsruhe Research Center, Germany. 
1999, 1996, 1990 Ph.D., M.A., B.S. Solid Mechanics University of Science and Technology of China.

Research Interests:

[1]. Dai Z, Liu L*, Zhang Z*: Strain engineering of two-dimensional materials: Issues and opportunities at the interface. Advanced Materials 2019; 31: 1805417.
[2]. Wang G, Dai Z, Xiao J, Feng S, Weng C, Liu L*, Xu Z*, Huang R*, Zhang Z*: Bending of multilayer van der Waals materials. Physical Review Letters 2019; 123: 116101.
[3]. Wang GR, Dai ZH, Wang YL, Tan PH, Liu LQ*, Xu ZP*, Wei YG, Huang R, Zhang Z*: Measuring interlayer shear stress in bilayer graphene. Physical Review Letters 2017; 119: 036101.
[4]. Dai ZH, Wang YL, Liu LQ*, Liu XL, Tan PH, Xu ZP, Kuang J, Liu Q, Lou J, Zhang Z*: Hierarchical graphene based films with dynamic self-stiffening for biomimetic artificial muscle. Advanced Functional Materials 2016; 26: 7003-7010.
[5]. Zeng Z, Jin H*, Chen MJ, Li WW, Zhou LC, Zhang Z*: Lightweight and hierarchically porous MWCNT/WPU composites for ultra-high performance electromagnetic interference shielding. Advanced Functional Materials 2016; 26: 303-310.
[6]. Liu LQ, Ma WJ, Zhang Z*: Macroscopic carbon nanotube assemblies: preparation, properties and potential applications. Small 2011; 7: 1504-1520.
[7]. Gao Y, Liu LQ*, Zu SZ, Peng K, Zhou D, Han BH, Zhang Z*: The effect of interlayer adhesion on the mechanical behaviors of macroscopic graphene oxide papers. ACS Nano 2011; 5: 2134-2141.
[8]. Tang LC, Zhang H*, Han JH, Wu XP, Zhang Z*: Fracture mechanisms of epoxy filled with ozone functionalized multi-wall carbon nanotubes. Composites Science and Technology 2011; 72: 7-13.
[9]. Jia Y, Peng K, Gong XL, Zhang Z*: Creep and recovery of polypropylene/ carbon nanotube composites. International Journal of Plasticity 2011; 27: 1239-1251.
[10]. Ma WJ, Liu LQ, Zhang Z*, Yang R, Liu G, Zhang TH, An XF, Yi XS, Ren Y, Niu Z, Li J, Dong H, Zhou W, Ajayan PM, Xie S-S*: High-strength composite fibres: Realizing true potential of carbon nanotubes in polymer matrix through continuous reticulate architecture and molecular level coupling. Nano Letters 2009; 9: 2855-2861.
[11]. Zhang H, Zhang Z*, Friedrich K, Eger C: Property improvements of in situ epoxy nanocomposites with reduced interparticle distance at high nanosilica content. Acta Materialia 2006; 54: 1833-1842.
[12]. Zhang Z*, Yang JL, Friedrich K: Creep resistant polymeric nanocomposites. Polymer 2004; 45: 3481-3485.

Links

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