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个人简介

2012年湖南大学,物理与微电子科学学院,获物理学博士学位。2013年瑞典皇家理工学院,理论化学与生物技术系,获工学博士学位。2013年由湖南大学应用物理系调入电子科技大学光电信息学院工作。主要从事量子力学与统计物理本科课程的教学和科研工作。

研究领域

低维材料的电学、光学性质,纳米分子材料的催化效应,低维物理器件的光、电、声、磁输运行为。

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Xiao-Fei Li,Ke-Yan Lian,Lingling Liu,Yingchao Wu,Qi Qiu,Jun Jiang,Mingsen Deng,Yi Luo,Unraveling the formation mechanism of graphitic nitrogen doping in thermally treated graphene with ammonia,Scientific Reports,2016,2:23495. Xiao-Fei Li,Ke-Yan Lian,Qi Qiu,Yi Luo,Half-filled energy bands induced negative differential resistance in nitrogen-doped graphene,Nanoscale,2015,7:4156. Xiang-Hua Zhang,Xiao-Fei Li(通讯),Ling-LingWang,Liang Xu, Kai-Wu Luo,Realistic-contact-induced enhancement of rectifying in carbon-nanotube/graphene-nanoribbon junctions,Applied Physics Letters,2014,104:103107. Xiao-Fei Li,Ling-Ling Wang,Ke-Qiu Chen,Yi Luo,Strong current polarization and negative differential resistance in chiral graphene nanoribbons with reconstructed (2,1)-edges,Applied Physics Letters,2012,101:073101. Xiao-Fei Li,Ling-Ling Wang,Ke-Qiu Chen,Yi Luo,Tuning the Electronic Transport Properties of Zigzag Graphene Nanoribbons via Hydrogenation Separators,Journal of Physical Chemistry C,2011,115:24366. Li Xiao-Fei, Wang Ling-Ling,Chen Ke-Qiu,Luo Yi,Design of Graphene-Nanoribbon Heterojunctions from First Principles,Journal of Physical Chemistry C,2011,115:12616 Li Xiao-Fei ,Ren Hao,Wang Ling-Ling,Cheng Ke-Qiu,Yang Jinlong,Luo Yi,Important Structural Factors Controlling the Conductance of DNA Pairs in Molecular Junctions,Journal of Physical Chemistry C,2010,114:14240. Li Xiao-Fei,Chen Ke-Qiu,Wang Lingling,Luo Yi ,Effects of Interface Roughness on Electronic Transport Properties of Nanotube Molecule Nanotube Junctions,Journal of Physical Chemistry C,2010,114:12335 Li Xiao-Fei,Wang Lingling,Chen Ke-Qiu,Luo, Yi,Nanomechanically induced molecular conductance switch,Applied Physics Letters,2009,95:232118 Li Xiao-Fei,Chen Ke-Qiu,Wang Lingling,Long Meng-Qiu,Zou B. S.,Shuai Z.,Effect of length and size of heterojunction on the transport properties of carbon-nanotube devices,Applied Physics Letters,2007,91:133511

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