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个人简介

教育经历 2002.09—2008.07 中国科学技术大学 微尺度国家实验室 博士 2007.06-2008.02 香港中文大学 物理系 联合培养 1998.09—2002.07 安徽师范大学 物理系 本科 工作经历 2010.12 – 至今 南京理工大学 2008.08-2010.12 美国北卡罗莱纳州立大学 获奖荣誉 2016年 333工程中青年领军人才 2015年 国家优秀青年基金 2014年 南京理工大学科技成果奖 2013年 江苏省杰出青年基金 2013年 333工程中青年学术带头人 2013年 六大人才高峰计划 2013年 南京市自然科学优秀论文二等奖 2012年 教育部新世纪优秀人才计划 2012年 江苏省青蓝工程中青年学术带头人 2010年 全国优秀博士论文提名 2009年 中国科学院优秀博士论文 2009年 安徽省优秀博士论文 2008年 中国科学院院长奖 2007年 求是研究生奖

研究领域

依托课题组,现成立了新能源与微结构物理研究所,目前具有两个实验方向,一个理论方向;实验理论密切结合,致力于实现产学研结合的科研模式,具体研究方向为: 1、半导体材料研究 2、能源材料的制备、设计及调控 3、微结构调控(凝聚态物理)

近期论文

查看导师新发文章 (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)

[20] Chengxi Huang, Yongping Du, Haiping Wu*,Hongjun Xiang*, Kaiming Deng, Erjun Kan,* " Prediction of Intrinsic Ferromagnetic Ferroelectricity in a Transition-Metal Halide Monolayer" Phys. Rev. Lett, 120, 147601 (2018). [19] Chengxi Huang, Jian Zhou*, Haiping Wu, Kaiming Deng, Puru Jena*, Erjun Kan,* "Quantum anomalous Hall effect in ferromagnetic transition metal halides" Phys. Rev. B, 95, 045113 (2017). [18]Ting Hu, Haiping Wu, Haibo Zeng*, Kaiming Deng, Erjun Kan,* " New Ferroelectric Phase in Atomic-Thick Phosphorene Nanoribbons: Existence of in-Plane Electric Polarization" Nano. Lett. 16, 8015 (2016). [17] Qiushi Yao, Hong Fang, Kaiming Deng, Erjun Kan,* and Puru Jena. Superhalogens as building blocks of two-dimensional organic-inorganic hybrid perovskites for optoelectronics applications. Nanoscale, 8,17836 (2016). [16] Chengxi Huang, Jian Zhou, Haiping Wu, Kaiming Deng, Puru Jena, and Erjun Kan*, Quantum Phase Transition in Germanene and Stanene Bilayer: From Normal Metal to Topological Insulator, J. Phys. Chem. Lett, 7, 1919 (2016). [15] Shengli Zhang, Meiqiu Xie, Fengyu Li, Zhong Yan, Yafei Li, Erjun Kan,Wei Liu, Zhongfang Chen, Haibo Zeng. Semiconducting Group 15 Monolayers: A Broad Range of Band Gaps and High Carrier Mobilities. Angew. Chem. Int. Ed. 55, 1666 (2016). [14] Fang Wu, Chengxi Huang, Haiping Wu, Changhoon Lee, Kaiming Deng, Erjun Kan*, Puru Jena*, "Atomically Thin Transition-Metal Dinitrides: High-Temperature Ferromagnetism and Half-Metallicity " Nano. Lett. 15, 8277 (2015). [13] Jialei Hao, Chengxi Huang, Haiping Wu, Yuhao Qiu, Qian Gao, Zhenpeng Hu, Erjun Kan* and Lixin Zhang. A promising way to open an energy gap in bilayer graphene. Nanoscale, 7(40), 17096-17101 (2015). [12] Hongjun Xiang , Bing Huang, Erjun Kan, Su-Huai Wei, Xingao Gong, Towards direct-gap silicon phases by inverse band structure design approach, Phys. Rev. Lett. 110, 118702 (2013). [11] E. J. Kan, Fang Wu, Haiping Wu, Chuanyun Xiao, Hongjun Xiang and Kaiming Deng. d0 magnetism in semiconductors through confining delocalized atomic orbitals[J]. Applied Physics Letters, 102(2): 022422(2013). [10] Erjun Kan, Fang Wu, Kaiming Deng Weihua Tang. High-temperature ferro-electricity in two-dimensional atomic crystal. Applied Physics Letters, 103(19), 193103(2013). [9] . H. J. Xiang, Bing Huang, Erjun Kan, Suhuai Wei, X. G. Gong. Towards direct-gap silicon phases by the inverse band structure design approach. Physical review letters, 110(11), 118702(2013). [8] Erjun Kan, Ming Li, Shuanglin Hu, Chuanyun Xiao, Hongjun Xiang and Kaiming Deng. Two-Dimensional Hexagonal Transition-Metal Oxide for Spintronics. Journal of Physical Chemistry Letters. 4, 1120-1125(2013). [7] Erjun Kan*, Wei Hu, Chuanyun Xiao, Ruifeng Lu, Kaiming Deng*, Jinlong Yang*, and Haibin Su, "Half-metallicity in Organic Single Porous Sheets" J. Am. Chem. Soc. 134, 5718 (2012). [6]Erjun Kan, Fang Wu, Yuemei Zhang, Hongjun Xiang, Ruifeng Lu, Chuanyun Xiao, Kaiming Deng and Haibin Su. Enhancing magnetic vacancies in semiconductors by strain. Applied Physics Letters, 100, 072401(2012). [5] Fang Wu, Yunfei Liu, Guanxia Yu, Dingfeng Shen, Yunlu Wang and Erjun Kan. Visible-Light-Absorption in Graphitic C3N4 Bilayer: Enhanced by Interlayer Coupling, J. Phys. Chem. Lett., 3 (22), pp 3330–3334(2012). [4] Hongjun Xiang,Erjun Kan, Y. Zhang, M. H. Whangbo and X. G. Gong, General Theory for the Ferroelectric Polarization Induced by Spin-Spiral order, Phys. Rev. Lett, 107, 157202 (2011). [3] Erjun Kan, Hongjun Xiang, Changhoon Lee, Fang Wu, Jinlong Yang, and M. –H. Whangbo*, Origin of the Ferroelectricity in Perovskites with s0 A-Site Cations: Toward Near Room Temperature Multiferroics, Angew. Chem. Int. Ed, 49, 1603 (2010). [2] Hongjun Xiang, Erjun Kan, Su-Huai Wei, Myung-Hwan Whangbo, and Jinlong Yang, “Narrow” Graphene Nanoribbons Made Easier by Partial Hydrogenation, Nano. Lett, 9, 4025 (2009). [1] Erjun Kan, Zhenyu Li, Jinlong Yang*, and Jianguo Hou, Half-metallicity in edge-modified zigzag graphene nanoribbons, J. Am. Chem. Soc, 130, 4224 (2008).

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