1)Y. J. Sun, et al. Effects of loading mode and orientation on deformation mechanism of graphene nano-ribbons[J]. Appl Phys Lett, 2013,103:191906.(SCI,IF=3.7)
2)Y. J. Sun, et al,Stress-induced annihilation of Stone–Wales defects in graphene nanoribbons, J. Phys. D: Appl. Phys. 45 (2012) 305303.(SCI,IF=2.5)
3)Y. J. Sun, et al. Molecular dynamics simulation on double-elastic deformation in zigzag graphene nanoribbons at low temperature. Mater Sci Eng B, 2014,180:1-6. (SCI,IF=1.5)
4)Y. J. Sun, et al. Molecular Dynamics Simulation on Tensile Deformation of Graphene with Nanomeshes, Integrated Ferroelectrics, 2011, 128:118–124(SCI,IF=0.4)
5)Y. J. Sun, et al. Size dependent mechanical properties of grapheme nanoribbons: Molecular dynamics simulation. Mater Sci Forum, 2013, 749:456~460.(SCI)
6)Y. J. Sun, et al. Silicon dioxide coating deposited by PDPs on PET films and influence on oxygen transmission rate, Chinese physics letters,2008, Vol, 25(SCI, IF=0.7)
7)F. Ma, Y. J. Sun, et al, Reversible phase transformation in graphene nano-ribbons: Lattice shearing based mechanism, Acta Materialia, 59 (2011) 6783–6789(SCI, IF=3.7)
8) F. Ma, H.B. Zheng, Y. J. Sun, et al. Strain effect on lattice vibration, heat capacity, and thermal conductivity of graphene. Appl Phys Lett, 2012,101:111904.(SCI, IF=3.8)
9)Yang, F. Ma, Y. J. Sun, et al. Influence of typical defects on thermal conductivity of graphene nanoribbons: An equilibrium molecular dynamics simulation. Appl Sur Sci, 2012,258:9926~9931. (SCI, IF=2.0)
10)T. Han, G.R. Chang, Y. J. Sun, et al. Microstructure characterization of Si/C multilayer thin films, Mater. Sci. Forum, 2013, 743-744:910-914.(SCI)