代表性论文
1. Jiang J-W, Leng J, Li J, Guo Z, *Chang T, Guo X, and Zhang T, Twin graphene: A novel two-dimensional semiconducting carbon allotrope, Carbon 118: 370, 2017.
2. Li J, Guo Z, Zhang H, *Chang T, Guo X, and Gao H, Negative thermophoresis in concentric carbon nanotube nanodevices, Nano Lett 16: 6396, 2016.
3. Zhang H, Guo Z, Gao H, and*Chang T, Stiffness-dependent interlayer friction of graphene, Carbon 94: 60, 2015.
4. *Chang T, Zhang H, Guo Z, Guo X, and Gao H,Nanoscale Directional Motion towards Regions of Stiffness,Phys Rev Lett 114: 015504, 2015. (News and Views in Nature)
5. Yi L, Yin Z, Zhang Y-Y, and *Chang T, A theoretical evaluation of the temperature and strain-rate dependent fracture strength of tilt grain boundaries in graphene, Carbon 51: 373, 2013.
6. Guo Z, *Chang T, Guo X, and *Gao H, Mechanics of thermophoretic and thermally induced edge forces in carbon nanotube nanodevices, J MechPhys Solids, 60: 1676, 2012.
7. Guo Z, *Chang T, Guo X, and *Gao H, Thermal-Induced Edge Barriers and Forces in Interlayer Interaction of Concentric Carbon Nanotubes, Phys Rev Lett 107: 105502, 2011.
8. *Chang T, and Guo Z, Temperature-Induced Reversible Dominoes in Carbon Nanotubes, Nano Lett 10: 3490, 2010.
9. *Chang T, A molecular based anisotropic shell model for single-walled carbon nanotubes, J MechPhys Solids 58: 1422, 2010.
10. *Chang T, Dominoes in carbon nanotubes, Phys Rev Lett 101: 175501, 2008. (Research Highlight in Nature) (Research Highlight in Nature Nanotechnology)
11. *Chang T,Torsional behavior of chiral single-walled carbon nanotubes is loading direction dependent, ApplPhysLett 90: 201910, 2007.
12. Geng J, and *Chang T, Nonlinear stick-spiral model for predicting mechanical behavior of single-walled carbon nanotubes, Phys Rev B 74: 245428, 2006.
13. *Chang T, Geng J and Guo X,Chirality- and size-dependent elastic properties of single-walled carbon nanotubes, ApplPhysLett 87: 251929, 2005.
14. *Chang T, Guo W and GuoX,Buckling of multiwalled carbon nanotubes under axial compression and bending via a molecular mechanics model, Phys Rev B 72: 064101, 2005.
15. Chang T, and *Gao H, Size-dependent elastic properties of a single-walled carbon nanotube via a molecular mechanics model, J MechPhys Solids 51: (6) 1059-1074, 2003.