个人简介
2018/7 - 至今,西安交通大学,材料学院,特聘研究员 2015/9 - 2016/9,德州大学奥斯汀分校,访问学者 2011/9 - 2014/1,东京大学,博士后 2010/7 - 2018/7,湘潭大学,物理系,讲师、副教授
研究领域
电子材料的界面结构、界面诱导的新奇输运现象 多场耦合作用下的自旋动力学行为 新型自旋电子材料的理论设计
近期论文
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1. P. Li(研究生), X. Li, W. Zhao, H. Chen, M. X. Chen, Z. X. Guo*, J. Feng, X. G. Gong, A. McDonald, Topological Dirac States beyond π-Orbitals for Silicene on SiC(0001) Surface, Nano Letters 17, 6195 (2017). 2. Z. X. Guo, D. Zhang, and X. G. Gong*, Thermal conductivity of graphene nanoribbons, Applied Physics Letters 95, 163103 (2009) (ESI 高引论文). 3. Z. X. Guo, S. Furuya, J.-I. Iwata, and A. Oshiyama, Absence and presence of Dirac electrons in silicene on substrates, Physical Review B 87, 235435 (2013) (ESI 高引论文). 4. Z. X. Guo, S. Furuya, J.-I. Iwata, and A. Oshiyama, Absence of Dirac electrons in silicene on Ag(111) surfaces, Journal of the Physical Society of Japan 82, 063714 (2013) (Editor’s Choice). 5. Z. X. Guo*, Y. Y. Zhang, H. J. Xiang, X. G. Gong, and A. Oshiyama, Structural evolution and optoelectronic applications of multilayer silicene, Physical Review B (Raid Communications) 92, 201413 (2015). 6. Z. X. Guo and A. Oshiyama, Structural bistability and deep Dirac states in bilayer silicene on Ag(111) surfaces, Physical Review B 89, 155418 (2014). 7. Z. X. Guo*, J. W. Ding, and X. G. Gong, Substrate effects on the thermal conductivity of epitaxial graphene nanoribbons, Physical Review B 85, 235429 (2012). 8. Z. X. Guo, D. Zhang, and X. G. Gong*, Manipulating thermal conductivity through substrate coupling, Physical Review B 84, 075470 (2011). 9. Z. X. Guo, Y. Xiao, J, W. Ding*, and X. H. Yan, Lattice dynamics of single-walled achiral BC3 nanotubes, Physical Review B 73, 045405 (2006). 10. Z. X. Guo and A. Oshiyama*, Crossover between silicene and ultra-thin Si atomic layers on Ag (111) surfaces, New Journal of Physics 17, 045028 (2015). 11. P. Li(研究生), J. X. Cao, and Z. X. Guo*, A new approach for fabricating germanene with Dirac electrons preserved: a first principles study, Journal of Materials Chemistry C 4, 1736 (2016).